Prof. Dr. Hans F. Braun
 
Publikationen von Hans F. Braun
http://www.staff.uni-bayreuth.de/~bt200007/publications/index.html, letzte Änderung: 27.06.2023
Fakultät für Mathematik, Physik und Informatik der Universität Bayreuth - Physikalisches Institut

Veröffentlichungen - Publications - Publikationen
Hans F. Braun


  1. H. F. Braun and E. J. Saur.
    Structure and superconducting properties of sputtered Nb3Ge films.
    In F. R. S. Mendelssohn (ed.), Proceeding of the 6th International Cryogenic Engineering Conf., pp. 411–413 (IPC Sci. & Technology Press, Guildford, UK, 1976).
     [TOP]
  2. H. F. Braun, E. N. Haeussler, and E. J. Saur.
    Anisotropy of critical currents and fields in sputtered and evaporated superconducting Nb3Ge films.
    IEEE Transactions on Magnetics MAG 13 (1977) 327–330.
    https://ieeexplore.ieee.org/document/1059456
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  3. H. F. Braun and M. A. Winkelmann.
    Critical currents in thin Nb3Ge and Nb3Ga films.
    In K. D. Timmerhaus, R. P. Reed, and A. F. Clark (eds.), Advances in Cryogenic Engineering, vol. 24, pp. 358–362 (Plenum Publishing Corp., New York, 1978).
    doi: 10.1007/978-1-4613-9853-0_39
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  4. H. F. Braun and E. J. Saur.
    Superconducting properties of Nb3Ge thin films prepared by cosputtering.
    J. Low Temp. Phys. 33 (1978) 87–104.
    doi: 10.1007/BF00117068
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  5. H. F. Braun, E. N. Haeussler, and E. J. Saur.
    Structure dependent anisotropy of superconducting critical currents in sputtered and evaporated Nb3Ge films.
    J. Less-Common Metals 62 (1978) 95–98.
    doi: 10.1016/0022-5088(78)90018-8
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  6. P. Müller, H. Adrian, G. Ischenko, and H. F. Braun.
    Nb3Ge and effects of heavy ion irradiation and thermal recovery on Tc, resistivity and dHc2/dT(T=Tc).
    J. de Physique Colloques 39(C6) (1978) 387–388.
    doi: 10.1051/jphyscol:19786173
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  7. H. Adrian, G. Ischenko, M. Lehmann, P. Mueller, H. Braun, and G. Linker.
    Low temperature irradiation of Nb3Sn and V3Si with high energy sulphur ions.
    J. Less-Common Metals 62 (1978) 99–110.
    doi: 10.1016/0022-5088(78)90019-X
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  8. H. F. Braun, E. N. Haeussler, W. W. Sattler, and E. J. Saur.
    Superconducting behavior of Nb3Ge thin films under hydrostatic pressure.
    In C. W. Chu and J. A. Woollam (eds.), High Pressure and Low Temperature Physics, pp. 443–456 (Plenum Publishing Corp., New York, 1978).
    doi: 10.1007/978-1-4684-3351-7_29
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  9. H. F. Braun, G. Burri, and L. Rinderer.
    Partial phase diagram of the system Sc-Rh-Si.
    J. Less-Common Metals 68 (1979) P1–P8.
    doi: 10.1016/0022-5088(79)90281-9
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  10. H. F. Braun.
    Superconductivity of rare earth - iron silicides.
    Phys. Lett. A 75 (1980) 386–388.
    doi: 10.1016/0375-9601(80)90849-X
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  11. H. F. Braun and C. U. Segre.
    The superconductivity of Sc5T4Si10 (T=Co,Rh,Ir) and isomorphous compounds.
    Solid State Commun. 35 (1980) 735–738.
    doi: 10.1016/0038-1098(80)91065-0
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  12. H. F. Braun, K. Yvon, and R. M. Braun.
    Sc5T4Si10 (T = Co, Rh, Ir) and Y5T4Ge10 (T = Os, Ir) with a new tetragonal structure type.
    Acta Cryst. B 36 (1980) 2397–2399.
    doi: 10.1107/S0567740880008825
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  13. H. F. Braun and K. Yvon.
    SmFeB4 — a new ternary boride of the YCrB4 type.
    Acta Cryst. B 36 (1980) 2400–2402.
    doi: 10.1107/S0567740880008837
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  14. H. F. Braun.
    Superconducting ternary silicides and germanides.
    In G. K. Shenoy, B. D. Dunlap, and F. Y. Fradin (eds.), Ternary Superconductors, pp. 225–231 (Elsevier North Holland, 1981).
    ISBN: 978-0-444-00626-4.
    https://trove.nla.gov.au/work/24939509?q&versionId=30085941
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  15. H. F. Braun and C. U. Segre.
    Ternary superconductors of the Sc5Co4Si10 type.
    In G. K. Shenoy, B. D. Dunlap, and F. Y. Fradin (eds.), Ternary Superconductors, pp. 239–242 (Elsevier North Holland, 1981).
    ISBN: 978-0-444-00626-4.
    https://trove.nla.gov.au/work/24939509?q&versionId=30085941
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  16. C. U. Segre, H. F. Braun, and K. Yvon.
    Properties of Y3Ru4Ge13 and isotypic compounds.
    In G. K. Shenoy, B. D. Dunlap, and F. Y. Fradin (eds.), Ternary Superconductors, pp. 243–246 (Elsevier North Holland, 1981).
    ISBN: 978-0-444-00626-4.
    https://trove.nla.gov.au/work/24939509?q&versionId=30085941
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  17. B. Chabot, H. F. Braun, K. Yvon, and E. Parthé.
    Rhodium scandium disilicide with an ordered YZn3 type structure.
    Acta Cryst. B 37 (1981) 668–671.
    doi: 10.1107/S0567740881003865
     [TOP]
  18. C. U. Segre and H. F. Braun.
    Reentrant superconductivity in Tm2Fe3Si5.
    Phys. Lett. A 85 (1981) 372–374.
    doi: 10.1016/0375-9601(81)90334-0
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  19. C. U. Segre and H. F. Braun.
    Nonlinear pressure effects in superconducting rare earth – iron silicides.
    In J. S. Schilling and R. N. Shelton (eds.), Physics of Solids Under High Pressure, pp. 381–384 (North Holland, 1981).
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  20. H. C. Ku, H. F. Braun, and F. Acker.
    Antiferromagnetism in RE(Rh1-xIrx)4B4 compounds.
    Physica B 108 (1981) 1231–1232.
    doi: 10.1016/0378-4363(81)90916-5
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  21. H. F. Braun, C. U. Segre, F. Acker, M. Rosenberg, S. Dey, and P. Deppe.
    Susceptibility and Mößbauer studies of magnetic rare earth – iron silicides.
    J. Magn. Magn. Mater. 25 (1981) 117–123.
    doi: 10.1016/0304-8853(81)90109-8
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  22. D. C. Johnston and H. F. Braun.
    Systematics of superconductivity in ternary compounds.
    In M. B. Maple and O. Fischer (eds.), Superconductivity in Ternary Compounds II, vol. 34 of Topics of Current Physics, pp. 11–55 (Springer Verlag, 1982).
    doi: 10.1007/978-1-4899-3768-1_2
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  23. A. R. Moodenbaugh, D. E. Cox, and H. F. Braun.
    Neutron diffraction study of magnetically ordered Tb2Fe3Si5.
    Phys. Rev. B 25 (1982) 4702–4710.
    doi: 10.1103/PhysRevB.25.4702
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  24. M. Pelizzone, H. F. Braun, and J. Muller.
    Magnetic properties of RCoSi2 compounds (R=rare earth).
    J. Magn. Magn. Mater. 30 (1982) 33–36.
    doi: 10.1016/0304-8853(82)90006-3
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  25. H. F. Braun and M. Pelizzone.
    Coexistence of superconductivity and antiferromagnetic ordering in (Sc1-xDyx)5Ir4Si10 solid solutions.
    In W. Buckel and W. Weber (eds.), Superconductivity in d– and f–Band Metals, pp. 245–248 (Kernforschungszentrum Karlsruhe, Karlsruhe, 1982).
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  26. C. B. Vining, R. N. Shelton, H. F. Braun, and M. Pelizzone.
    Low-temperature heat capacity of superconducting ternary iron silicides.
    Phys. Rev. B 27 (1983) 2800–2806.
    doi: 10.1103/PhysRevB.27.2800
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  27. M. Ishikawa, H. F. Braun, and J. L. Jorda.
    Effect of composition on the superconductivity of CeCu2Si2.
    Phys. Rev. B 27 (1983) 3092–3095.
    doi: 10.1103/PhysRevB.27.3092
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  28. H. F. Braun, N. Engel, and E. Parthé.
    Polymorphism and superconductivity of LaIr2Si2.
    Phys. Rev. B 28 (1983) 1389–1395.
    doi: 10.1103/PhysRevB.28.1389
     [TOP]
  29. K. Yvon, H. F. Braun, and E. Gratz.
    On the structure of the so-called Y4Co3 phase and its stabilization by silicon.
    J. Phys. F: Met.Phys. 13 (1983) L131–L135.
    doi: 10.1088/0305-4608/13/7/002
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  30. N. Engel, H. F. Braun, and E. Parthé.
    LaIrSi3, with the BaNiSn3-type structure: The third ordered ternary BaAl4-type derivative in the La–Ir–Si system.
    J. Less-Common Metals 95 (1983) 309–315.
    doi: 10.1016/0022-5088(83)90525-8
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  31. E. Parthé, B. Chabot, H. F. Braun, and N. Engel.
    Ternary BaAl4-type derivative structures.
    Acta Cryst. B 39 (1983) 588–595.
    doi: 10.1107/S010876818300302X
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  32. T. Jarlborg, H. F. Braun, and M. Peter.
    Structural properties and band structure of heavy fermion systems: CeCu2Si2 and LaCu2Si2.
    Z. Phys. B 52 (1983) 295–301.
    doi: 10.1007/BF01307399
     [TOP]
  33. H. F. Braun.
    Superconductivity in ternary rare earth – transition metal silicides: a critical review.
    J. Less-Common Metals 100 (1984) 105–124.
    doi: 10.1016/0022-5088(84)90057-2
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  34. B. Bellarbi, A. Benoit, D. Jaccard, J. M. Mignot, and H. F. Braun.
    High-pressure valence instability and Tc maximum in superconducting CeCu2Si2.
    Phys. Rev. B 30 (1984) 1182–1187.
    doi: 10.1103/PhysRevB.30.1182
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  35. R. N. Shelton, H. F. Braun, and E. Musick.
    Superconductivity and relative phase stability in 1:2:2 ternary transition metal silicides and germanides.
    Solid State Commun. 52 (1984) 797–799.
    doi: 10.1016/0038-1098(84)90008-5
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  36. D. Jaccard, J. M. Mignot, B. Bellarbi, A. Benoit, H. F. Braun, and J. Sierro.
    High-pressure transport coefficients of the heavy-fermion superconductor CeCu2Si2.
    J. Magn. Magn. Mater. 47-48 (1985) 23–29.
    doi: 10.1016/0304-8853(85)90348-8
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  37. J. L. Tholence, P. Haen, D. Jaccard, P. Lejay, J. Flouquet, and H. F. Braun.
    Localization and magnetic properties in cerium compounds.
    J. Appl. Phys. 57 (1985) 3172–3174.
    doi: 10.1063/1.335139
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  38. B. Chabot, E. Parthé, and H. F. Braun.
    Hf2Ru3Si4 and Zr2Ru3Si4 with infinite si-centered square antiprism columns and infinite ru-centered octahedron columns.
    Acta Cryst. C 41 (1985) 1148–1152.
    doi: 10.1107/S010827018500693X
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  39. A. Bezinge, H. F. Braun, J. Muller, and K. Yvon.
    Tetragonal rare earth (R) iron borides, R1+εFe4B4 (ε ≅ 0.1), with incommensurate rare earth and iron substructures.
    Solid State Commun. 55 (1985) 131–135.
    doi: 10.1016/0038-1098(85)90264-9
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  40. H. F. Braun and J. L. Jorda.
    Physical properties of CeCu2Si2: Phase diagram effects.
    Physica B 135 (1985) 72–75.
    doi: 10.1016/0378-4363(85)90438-3
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  41. H. F. Braun, T. Jarlborg, and A. Junod.
    Specific heat and bandstructure of two polymorphs of LaIr2Si2.
    Physica B 135 (1985) 397–399.
    doi: 10.1016/0378-4363(85)90515-7
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  42. S. Han, K. W. Ng, E. L. Wolf, H. F. Braun, L. Tanner, Z. Fisk, J. L. Smith, and M. R. Beasley.
    Anomalous s-wave proximity-induced josephson effects in UBe13, CeCu2Si2, and LaBe13: A new probe of heavy-fermion superconductivity.
    Phys. Rev. B 32 (1985) 7567–7570.
    doi: 10.1103/PhysRevB.32.7567
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  43. B. Bittins, K. Keulerz, A. Scherzberg, J. P. Sanchez, W. Boksch, H. F. Braun, J. Roehler, H. Schneider, P. Weidner, and D. Wohlleben.
    Mixed valence on dilute Eu in YCu2Si2.
    Z. Phys. B 62 (1985) 21–29.
    doi: 10.1007/BF01303732
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  44. H. D. Yang, R. N. Shelton, and H. F. Braun.
    Superconductivity and electronic instability at high pressure in Sc5Co4Si10-type compounds.
    Phys. Rev. B 33 (1986) 5062.
    doi: 10.1103/PhysRevB.33.5062
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  45. A. Bezinge, K. Yvon, H. F. Braun, J. Muller, and H.-U. Nissen.
    Nd1+εFe4B4: A composition modulated compound with incommensurate composite crystal structure.
    Phys. Rev. B 36 (1987) 1406.
    doi: 10.1103/PhysRevB.36.1406
     [TOP]
  46. J. L. Jorda, J. Muller, H. F. Braun, and C. Susz.
    Phase relationships in the ternary system Ti-Au-Al at 775 K.
    J. Less-Common Metals 134 (1987) 99–107.
    doi: 10.1016/0022-5088(87)90446-2
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  47. L. Schellenberg, H. F. Braun, C. U. Segre, M. Gueramian, and J. Muller.
    New superconducting phases in the Y-Os-Si system.
    Jpn. J. Appl. Phys. 26(Sup. 26-3) (1987) 963–964.
    doi: 10.7567/JJAPS.26S3.963
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  48. J. A. Gootas, J. W. Lynn, R. N. Shelton, P. Klavins, and H. F. Braun.
    Suppression of superconductivity by antiferromagnetism in Tm2Fe3Si5.
    Phys. Rev. B 36 (1987) 7277–80.
    doi: 10.1103/PhysRevB.36.7277
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  49. M. Gueramian, B. Chabot, K. Yvon, L. Schellenberg, and H. F. Braun.
    Crystal structures of orthorhombic Y3Os4Si12 and monoclinic Y5Os4Si14 and Y9Os4Si20.
    J. Less-Common Metals 142 (1988) 169–176.
    doi: 10.1016/0022-5088(88)90174-9
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  50. A. Gupta and H. F. Braun.
    Effect of atomic substitution in high-temperature superconductors: YBa2-xMxCu3O7-y (M = Na, K) and the system Bi-Ca-Sr-Cu-O.
    Physica C 153-155 (1988) 904–905.
    doi: 10.1016/S0921-4534(88)80147-3
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  51. L. Schellenberg, H. F. Braun, C. U. Segre, M. Gueramian, B. Chabot, M. Decroux, D. Cattani, and J. Muller.
    Superconductivity in silicon-rich RE-Os-Si-compounds.
    Physica C 153-155 (1988) 485–486.
    doi: 10.1016/0921-4534(88)90695-8
     [TOP]
  52. L. Schellenberg, H. F. Braun, and J. Muller.
    The osmium-silicon phase diagram.
    J. Less-Common Metals 144 (1988) 341–350.
    doi: 10.1016/0022-5088(88)90148-8
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  53. A. Gupta, P. Esquinazi, and H. F. Braun.
    Vibrating reed studies on non-single phase Bi-Ca-Sr-Cu-O superconducting ceramics.
    Phys. Rev. B 39 (1989) 12271–74.
    doi: 10.1103/PhysRevB.39.12271
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  54. A. Gupta, P. Esquinazi, H. F. Braun, and H.-W. Neumüller.
    Thermally activated depinning in polycrystalline Bi-based high-Tc superconductors.
    Phys. Rev. Lett. 63 (1989) 1869–72.
    doi: 10.1103/PhysRevLett.63.1869
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  55. M. Kuboth, H. F. Braun, L. Schellenberg, and J. Muller.
    Superconductivity under hydrostatic pressure in RE5Os4Si15 compounds (RE = Y, Tb, Er).
    Physica C 162-164 (1989) 407–8.
    doi: 10.1016/0921-4534(89)91078-2
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  56. A. Gupta, P. Esquinazi, H. F. Braun, W. Gerhäuser, H.-W. Neumüller, K. Heine, and J. Tenbrink.
    The depinning line in Bi-based high-Tc superconductors.
    Europhys. Lett. 10 (1989) 663–666.
    doi: 10.1209/0295-5075/10/7/010
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  57. A. Gupta, P. Esquinazi, H. F. Braun, and E. H. Brandt.
    Multiple phases or multiple flux lattice melting temperatures: Vibrating reed studies on Bi-based ceramics.
    Physica C 162-164 (1989) 667.
    doi: 10.1016/0921-4534(89)91200-8
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  58. P. Fischer, H.-W. Neumüller, B. Roas, H. F. Braun, and G. Saemann-Ischenko.
    Flux creep and pinning-potential in an YBa2Cu3O7-x thin film.
    Solid State Commun. 72 (1989) 871–4.
    doi: 10.1016/0038-1098(89)90417-1
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  59. H. F. Braun.
    Indium.
    In R. Flükiger and W. Klose (eds.), Superconductors, vol. 21a of Landolt-Börnstein, pp. 312–342 (Springer Verlag, Berlin, 1990), new series group III edn.
    doi: 10.1007/10332996_83
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  60. P. Esquinazi, A. Gupta, and H. F. Braun.
    The depinning line of a Y(Gd)Ba2Cu3Ox single crystal.
    Physica B 165–166 (1990) 1151.
    doi: 10.1016/S0921-4526(09)80161-0
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  61. A. Gupta, P. Esquinazi, and H. F. Braun.
    Lower critical field of single crystal Y(Gd6%)Ba2Cu3O6.83.
    Physica B 165–166 (1990) 1443.
    doi: 10.1016/S0921-4526(09)80307-4
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  62. A. Gupta, P. Esquinazi, H. F. Braun, H.-W. Neumüller, G. Ries, W. Schmidt, and W. Gerhäuser.
    Similar shifts of the depinning and irreversibility lines by oxygen irradiation of melt-processed Bi2Sr2CaCu2O8.
    Physica C 170 (1990) 95–102.
    doi: 10.1016/0921-4534(90)90234-6
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  63. A. Gupta, R. Tröbs, P. Esquinazi, and H. F. Braun.
    Dimensional crossover in a BiSrCaCuO single crystal vibrating reed experiment?.
    Z. Phys. B 81 (1990) 309.
    doi: 10.1007/BF01390809
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  64. P. Esquinazi, A. Gupta, and H. F. Braun.
    Vibrating reed studies on high-Tc superconductors.
    In A. V. Narlikar (ed.), Studies of HTSC, vol. 8 (NOVA Science Publishers, N.Y., 1991).
    ISBN: 1-56072-019-0.
    http://www.novapublishers.org/catalog/product_info.php?products_id=3324
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  65. A. Gupta, P. Esquinazi, H. F. Braun, W. Sadowsky, E. Walker, and D. Shaltiel.
    Vibrating reed studies on high Tc superconductors.
    Bull. Mater. Res. (Indian) 14 (1991) 877–882.
    Proc. Int. Conference on Superconductivity, Bangalore (India), Jan. 1990.
    https://www.ias.ac.in/article/fulltext/boms/014/03/0877-0882
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  66. J. Kober, A. Gupta, P. Esquinazi, H. F. Braun, and E. H. Brandt.
    Vibrating reed experiments on superconducting suspensions.
    Phys. Rev. Lett. 66 (1991) 2507–2510.
    doi: 10.1103/PhysRevLett.66.2507
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  67. A. Gupta, P. Esquinazi, and H. F. Braun.
    Sample size dependence of thermally activated depinning in high-temperature superconductors.
    In Supraleitung und Tieftemperaturtechnik, pp. 191–194 (VDI-Verlag Düsseldorf, 1991).
     [TOP]
  68. A. Gupta, P. Esquinazi, and H. F. Braun.
    Role of granularity in thermally activated depinning.
    Physica C 184 (1991) 393–402.
    doi: 10.1016/0921-4534(91)90406-O
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  69. P. Fischer, R. Busch, H.-W. Neumüller, G. Ries, and H. F. Braun.
    Time and orientation dependent magnetic measurements and increase of the critical current by fast neutron irradiation of YBa2Cu3O7-δ.
    Supercond. Sci. Technol. 5 (1992) S440–443.
    doi: 10.1088/0953-2048/5/1S/101
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  70. W. Widder, L. Bauernfeind, M. Franz, and H. F. Braun.
    The occurrence of 1212-type phase in the Pb-Sb-Sr-Ca-Y-Cu-O system.
    J. Alloys Compounds 195 (1993) 61–64.
    doi: 10.1016/0925-8388(93)90687-I
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  71. A. Gupta, Y. Kopelevich, P. Esquinazi, F. I. Schulz, and H. F. Braun.
    Vibrating reed studies of vortex pinning in high temperature superconductors.
    J. Alloys Compounds 195 (1993) 419–426.
    doi: 10.1016/0925-8388(93)90769-J
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  72. A. Gupta, Y. Kopelevich, M. Ziese, P. Esquinazi, P. Fischer, F. I. Schulz, and H. F. Braun.
    Magnetic field, temperature, geometry and angle dependent studies of vortex pinning in vibrating high-Tc superconductor crystals.
    Phys. Rev. B 48 (1993) 6359.
    doi: 10.1103/PhysRevB.48.6359
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  73. W. Widder, M. Franz, L. Bauernfeind, and H. F. Braun.
    Superconductivity at 40 k in the 1212 system (Pb1-xVx)Sr2Ca1-zYzCu2O7-δ.
    Physica C 217 (1993) 121–126.
    doi: 10.1016/0921-4534(93)90801-V
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  74. M. Ziese, P. Esquinazi, H. F. Braun, and Y. Kopelevich.
    Comparative study of the vortex motion in single crystalline and film samples of YBa2Cu3O7-δ.
    In H. C. Freyhardt (ed.), Applied Superconductivity, pp. 767–770 (DGM Informationsgesellschaft Verlag, 1993).
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  75. W. Widder, L. Bauernfeind, M. Franz, and H. F. Braun.
    Sb and V substitutions in the 1212-type superconductors.
    In H. C. Freyhardt (ed.), Applied Superconductivity, pp. 1605–1608 (DGM Informationsgesellschaft Verlag, 1993).
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  76. M. Ziese, P. Esquinazi, H. F. Braun, and A. B. Sherman.
    Elastic coupling and bulk pinning force of a YBa2Cu3O7 film.
    In H. W. Weber (ed.), Proceedings of the 7th International Workshop on “Critical currents in superconductors”, pp. 189–192 (World Scientific, Alpbach, 1994).
    doi: 10.1142/9789814534123
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  77. M. Ziese, P. Esquinazi, A. Gupta, and H. F. Braun.
    Disorder-induced transition of the vortex lattice in YBa2Cu3O7 crystals and films.
    Phys. Rev. B 50 (1994) 9491–9498.
    doi: 10.1103/PhysRevB.50.9491
     [TOP]
  78. H. Schmidt and H. F. Braun.
    Effect of pressure on superconductivity in the quaternary compounds RENi2B2C (RE = Lu, Y, Tm, Er, Ho).
    Physica C 229 (1994) 315–319.
    doi: 10.1016/0921-4534(94)90512-6
     [TOP]
  79. H. Schmidt, M. Müller, and H. F. Braun.
    Superconductivity in the pseudoquaternary system Y(Ni1-xCox)2B2C.
    Physica C 235-240 (1994) 779–780.
    doi: 10.1016/0921-4534(94)91614-4
     [TOP]
  80. L. Bauernfeind, W. Widder, W. Hofmann, and H. F. Braun.
    Variation of the lattice parameters with the Cu:Bi:Pb ratio in layered cuprates with the general formula (Cu1-(x+y)[PbxBiy])Sr2YCu2Oz (0.5 ≥ x+y ≥ 0.3, z ∼ 7).
    Physica C 235-240 (1994) 947–948.
    doi: 10.1016/0921-4534(94)91698-5
     [TOP]
  81. W. Widder, L. Bauernfeind, W. Hofmann, M. Stebani, and H. F. Braun.
    An attempt of carrier doping into (Ca1-xSrx)CuO2 by chemical substitution.
    Physica C 235-240 (1994) 997–998.
    doi: 10.1016/0921-4534(94)91723-X
     [TOP]
  82. J. Münzel, K. Widder, H. P. Geserich, P. Wölfle, W. Widder, H. F. Braun, and T. Wolf.
    C-axis reflectance and the superconducting order parameter of YBa2Cu3O7-δ.
    Physica C 235-240 (1994) 1087–1088.
    doi: 10.1016/0921-4534(94)91768-X
     [TOP]
  83. K. Widder, M. Merz, A. Zibold, H. P. Geserich, W. Widder, and H. F. Braun.
    Optical investigation of the metal-insulator transition in Y1-xPrxBa2Cu3O7-δ.
    Physica C 235-240 (1994) 1291–1292.
    doi: 10.1016/0921-4534(94)91870-8
     [TOP]
  84. A. Gupta, Y. Kopelevich, P. Esquinazi, M. Ziese, and H. F. Braun.
    Negative magnetic restoring force of the flux-line lattice in anisotropic high-Tc superconductors in the thermally activated depinning regime.
    Physica C 235-240 (1994) 3235–3236.
    doi: 10.1016/0921-4534(94)91144-4
     [TOP]
  85. M. Ziese, P. Esquinazi, and H. F. Braun.
    What do we learn from vibrating high temperature superconductors?.
    Supercond. Sci. Technol. 7 (1994) 869–890.
    doi: 10.1088/0953-2048/7/12/001
     [TOP]
  86. H. Schmidt, M. Weber, and H. F. Braun.
    Occurrence and composition dependence of superconductivity and magnetism in HoNi2B2C.
    Physica C 246 (1995) 177–185.
    doi: 10.1016/0921-4534(95)00150-6
     [TOP]
  87. W. Widder, L. Bauernfeind, M. Stebani, and H. F. Braun.
    Nonlinear ac-susceptibility and critical current of (Y1-xPrx)Ba2Cu3O7-δ ceramics.
    Physica C 249 (1995) 78–86.
    doi: 10.1016/0921-4534(95)00271-5
     [TOP]
  88. K. Widder, D. Berner, H. P. Geserich, W. Widder, and H. F. Braun.
    Optical investigation of the metal-insulator transition in NdBa2Cu3Ox — a comparison with YBa2Cu3Ox.
    Physica C 251 (1995) 274–278.
    doi: 10.1016/0921-4534(95)00423-8
     [TOP]
  89. L. Bauernfeind, W. Widder, and H. F. Braun.
    Superconducting cuprates of the type RuSr2(Gd2-xCex)Cu2O10.
    In A. Barone, D. Fiorani, and A. Tampieri (eds.), High Tc superconductors, vol. 6 of Fourth Euro Ceramics, p. 329 (Gruppo Editoriale Faenza S.p. A., Faenza, Italy, 1995).
    http://www.worldcat.org/title/fourth-euro-ceramics-volume-6-high-tc-superconductors-part-i/oclc/38891837
     [TOP]
  90. L. Bauernfeind, W. Widder, and H. F. Braun.
    Ruthenium-based layered cuprates RuSr2LnCu2O8 and RuSr2(Ln1+xCe1-x)Cu2O10 (Ln=Sm, Eu and Gd).
    Physica C 254 (1995) 151–158.
    doi: 10.1016/0921-4534(95)00574-9
     [TOP]
  91. W. Widder, M. Stebani, L. Bauernfeind, H. F. Braun, K. Widder, H. P. Geserich, M. Rübhausen, N. Dieckmann, and A. Bock.
    Growth and characterization of (Y,Pr)-123 single crystals: Influence of Al contamination and post-annealing under oxygen pressure.
    Physica C 256 (1996) 168–176.
    doi: 10.1016/0921-4534(95)00636-2
     [TOP]
  92. H. Schmidt, M. Weber, and H. F. Braun.
    Composition dependent magnetoresistivity studies on HoNi2B2C.
    Physica C 256 (1996) 393–399.
    doi: 10.1016/0921-4534(95)00649-4
     [TOP]
  93. H. Schmidt, M. Müller, and H. F. Braun.
    Influence of phase composition on the reentrant superconducting properties of Tm2Fe3Si5.
    Phys. Rev. B 53 (1996) 12389.
    doi: 10.1103/PhysRevB.53.12389
     [TOP]
  94. M. Rübhausen, N. Dieckmann, A. Bock, U. Merkt, W. Widder, and H. F. Braun.
    Resonant magnon Raman scattering in PrBa2Cu3O7 single crystals.
    Phys. Rev. B 53 (1996) 8619–22.
    doi: 10.1103/PhysRevB.53.8619
     [TOP]
  95. A. Nittke, P. Esquinazi, W. Widder, and H. F. Braun.
    Low temperature magnetocaloric effects in Dy123 and Y123 high-Tc crystals.
    Physica C 260 (1996) 273–82.
    doi: 10.1016/0921-4534(96)00151-7
     [TOP]
  96. K. Widder, M. Merz, D. Berner, J. Münzel, H. P. Geserich, A. Erb, R. Flükiger, W. Widder, and H. F. Braun.
    Optical investigation of Y1-zPrzBa2Cu3O7-δ single-domain crystals. A comparison between impurity-free and Al doped samples.
    Physica C 264 (1996) 11–18.
    doi: 10.1016/0921-4534(96)00197-9
     [TOP]
  97. H. Schmidt and H. F. Braun.
    Superconductivity and magnetism in the system RE(Ni1-xCox)2B2C (RE = Lu, Tm, Er, Ho, and Dy).
    Czech. J. Phys. 46(Suppl. S2) (1996) 827–8.
    doi: 10.1007/BF02583721
     [TOP]
  98. W. Widder, L. Bauernfeind, H. F. Braun, and H. Burkhardt.
    The behaviour of the intergranular critical current density of polycrystalline c-axis oriented YBa2Cu3O7-δ films.
    Czech. J. Phys. 46(Suppl. S3) (1996) 1287–8.
    doi: 10.1007/BF02562758
     [TOP]
  99. M. Rübhausen, N. Dieckmann, A. Bock, U. Merkt, W. Widder, and H. F. Braun.
    Raman scattering of magnetic excitations in Y1-xPrxBa2Cu3-yAlyO7-δ single crystals.
    J. Low Temp. Phys. 105 (1996) 761–766.
    doi: 10.1007/BF00768475
     [TOP]
  100. W. Widder, L. Bauernfeind, H. F. Braun, H. Burkhardt, D. Rainer, M. Bauer, and H. Kinder.
    Ac susceptibility and transport critical-current density of polycrystalline c-axis-oriented YBa2Cu3O7-δ films: Josephson tunneling and d-wave pairing.
    Phys. Rev. B 55 (1997) 1254.
    doi: 10.1103/PhysRevB.55.1254
     [TOP]
  101. L. Bauernfeind, W. Widder, and H. F. Braun.
    Superconductors consisting of CuO2 and RuO2 layers.
    J. Low Temp. Phys. 105 (1996) 1605.
    doi: 10.1007/BF00753929
     [TOP]
  102. A. Zibold, H. L. Liu, D. B. Tanner, J. Y. Wang, M. Grüninger, H. P. Geserich, T. Kopp, T. Wolf, W. Widder, and H. F. Braun.
    Optical study of antiferromagnetic single crystals Y1-xPrxBa2Cu3O6 in high magnetic fields.
    Phys. Rev. B 55 (1997) 11096–11099.
    doi: 10.1103/PhysRevB.55.11096
     [TOP]
  103. M. Müller, H. Schmidt, and H. F. Braun.
    Isothermal section at 800oC of the ternary system Tm–Fe–Si.
    J. Alloys Compounds 257 (1997) 205–210.
    doi: 10.1016/S0925-8388(96)03127-1
     [TOP]
  104. X. L. Chen, L. Bauernfeind, and H. F. Braun.
    Na0.5La0.5RuO3: Structure and electronic properties.
    Phys. Rev. B 55 (1997) 6888–6895.
    doi: 10.1103/PhysRevB.55.6888
     [TOP]
  105. H. Schmidt and H. F. Braun.
    Superconductivity, magnetism, and their coexistence in R(Ni1-xCox)2B2C (R = Lu, Tm, Er, Ho, Dy).
    Phys. Rev. B 55 (1997) 8497–8505.
    doi: 10.1103/PhysRevB.55.8497
     [TOP]
  106. H. Schmidt, A. Dertinger, B. Ernstberger, and H. F. Braun.
    Influence of thermal treatment on the phase properties of HoNi2B2C.
    J. Alloys Compounds 262-263 (1997) 459–461.
    doi: 10.1016/S0925-8388(97)00354-X
     [TOP]
  107. H. F. Braun and M. Müller.
    Silicon.
    In R. Flükiger and W. Klose (eds.), Superconductors, vol. 21d of Landolt-Börnstein, pp. 69–86 (Springer Verlag, Berlin, 1998), new series group III edn.
    doi: 10.1007/10086024_6
     [TOP]
  108. Y. Kopelevich, F. Ciovacco, P. Esquinazi, and H. F. Braun.
    Nonlocal in-plane resistance in high-Tc superconducting films in the vicinity of a Kosterlitz-Thouless-type transition.
    J. Low Temp. Phys. 111 (1998) 11–17.
    doi: 10.1023/A:1022289906669
     [TOP]
  109. H. Schmidt and H. F. Braun.
    Dependence of superconductivity and magnetism on material parameters in quaternary borocarbides.
    In A. V. Narlikar (ed.), Studies of high temperature superconductors, vol. 26, pp. 47–77 (NOVA Science Publishers, 1998).
    ISBN: 1-56072-628-8.
    http://www.novapublishers.org/catalog/product_info.php?products_id=3303
     [TOP]
  110. T. A. Wagner, A. Dertinger, W. Ettig, A. Krause, H. Schmidt, and H. F. Braun.
    The effect of thermal treatment on superconductivity in HoNi2B2C.
    Physica C 323 (1999) 71–78.
    doi: 10.1016/S0921-4534(99)00404-9
     [TOP]
  111. A. Dertinger, A. Kreyssig, C. Ritter, M. Loewenhaupt, and H. F. Braun.
    Superconductivity, magnetic ordering, and its interplay in HoNi211B2C.
    Physica B 284-288 (2000) 485–486.
    doi: 10.1016/S0921-4526(99)02075-X
     [TOP]
  112. R. König, A. Schindler, T. Herrmannsdörfer, and H. F. Braun.
    Magnetism and superconductivity in granular platinum at very low temperatures.
    In B. Kramer (ed.), Advances in Solid State Physics, vol. 40, pp. 729–740 (Vieweg-Verlag, Braunschweig, 2000).
     [TOP]
  113. A. Schindler, R. König, T. Herrmannsdörfer, and H. F. Braun.
    Inter- and intragranular effects in superconducting compacted platinum powders.
    Phys. Rev. B 62 (2000) 14350–14358.
    doi: 10.1103/PhysRevB.62.14350
     [TOP]
  114. H. F. Braun.
    Superconductivity and magnetism in ruthenocuprates and borocarbides.
    In K.-H. Müller and V. N. Narozhnyi (eds.), Rare Earth Transition Metal Borocarbides (Nitrides): Superconducting, Magnetic and Normal State Properties, pp. 233–242 (Kluwer Academic Publishers, Dordrecht, 2001).
    http://www.wkap.nl/prod/b/0-7923-6879-7
     [TOP]
  115. A. Dertinger, R. E. Dinnebier, A. Kreyssig, P. W. Stephens, S. Pagola, M. Loewenhaupt, S. van Smaalen, and H. F. Braun.
    Microscopic changes in HoNi2B2C due to thermal treatment, and its effect on superconductivity.
    Phys. Rev. B 63 (2001) 184518.
    doi: 10.1103/PhysRevB.63.184518
     [TOP]
  116. A. Schindler, R. König, T. Herrmannsdörfer, and H. F. Braun.
    Flux dynamics effects in superconducting compacted platinum powders.
    J. Low Temp. Phys. 124 (2001) 245–255.
    doi: 10.1023/A:1017538204585
     [TOP]
  117. H. F. Braun, L. Bauernfeind, O. Korf, and T. P. Papageorgiou.
    A phase diagram approach to superconductivity and magnetism in rutheno-cuprates.
    In C. Noce, A. Vecchione, M. Cuoco, and A. Romano (eds.), Ruthenate and Rutheno-Cuprate Materials: Unconventional Superconductivity, Magnetism and Quantum Phase Transitions, vol. 603 of Lecture Notes in Physics, pp. 142–159 (Springer-Verlag, 2002).
    doi: 10.1007/3-540-45814-X_10
     [TOP]
  118. C. Enss, A. Fleischmann, T. Görlach, Y. H. Kim, G. M. Seidel, and H. F. Braun.
    Thermalization of magnetic calorimeters.
    AIP Conference Proceedings 605 (2002) 71–74.
    doi: 10.1063/1.1457598
     [TOP]
  119. T. P. Papageorgiou, H. F. Braun, and T. Herrmannsdörfer.
    Superconducting RuSr2GdCu2O8 studied by SQUID magnetometry.
    Phys. Rev. B 66 (2002) 104509.
    doi: 10.1103/PhysRevB.66.104509
     [TOP]
  120. T. P. Papageorgiou, T. Herrmannsdörfer, R. Dinnebier, T. Mai, T. Ernst, M. Wunschel, and H. F. Braun.
    Magnetization anomalies in the superconducting state of RuSr2GdCu2O8 and the magnetic study of Sr2GdRuO6.
    Physica C 377 (2002) 383–392.
    doi: 10.1016/S0921-4534(01)01291-6
     [TOP]
  121. A. Schindler, R. König, T. Herrmannsdörfer, H. F. Braun, G. Eska, D. Günther, M. Meissner, M. Mertig, R. Wahl, and W. Pompe.
    Tc-enhancement in superconducting granular platinum.
    Europhys. Lett. 58 (2002) 885–891.
    doi: 10.1209/epl/i2002-00100-3
     [TOP]
  122. L. Bauernfeind, T. P. Papageorgiou, and H. F. Braun.
    Critical state models for a granular ferromagnetic superconductor.
    Physica B 329-333 (2003) 1336–1337.
    doi: 10.1016/S0921-4526(02)02161-0
     [TOP]
  123. H. F. Braun, T. P. Papageorgiou, T. Herrmannsdörfer, L. Bauernfeind, and O. Korf.
    Magnetization of superconducting RuSr2GdCu2O8 and of concurrent phases.
    Physica C 387 (2003) 26–32.
    doi: 10.1016/S0921-4534(03)00636-1
     [TOP]
  124. S. Chen, H. F. Braun, and T. P. Papageorgiou.
    Kinetics of formation of RuSr2GdCu2O8 by solid state reaction of Sr2GdRuO6 and CuO.
    J. Alloys Compounds 351 (2003) 7–13.
    doi: 10.1016/S0925-8388(02)01019-8
     [TOP]
  125. T. P. Papageorgiou, L. Bauernfeind, and H. F. Braun.
    Possible pitfalls in SQUID magnetometry of superconducting samples: The case of RuSr2GdCu2O8.
    J. Low Temp. Phys. 131 (2003) 129–143.
    doi: 10.1023/A:1022861430909
     [TOP]
  126. T. P. Papageorgiou, H. F. Braun, T. Görlach, M. Uhlarz, and H. von Löhneysen.
    Towards universal magnetization curves in the superconducting state of RuSr2GdCu2O8.
    Phys. Rev. B 68 (2003) 144518.
    doi: 10.1103/PhysRevB.68.144518
     [TOP]
  127. A. Schindler, R. König, T. Herrmannsdörfer, H. F. Braun, G. Eska, D. Günther, M. Meissner, M. Mertig, R. Wahl, and W. Pompe.
    Superconductivity at 20 mK in compacted submicrometer platinum powders.
    Physica B 329-333 (2003) 1427–1428.
    doi: 10.1016/S0921-4526(02)02354-2
     [TOP]
  128. T. P. Papageorgiou and H. F. Braun.
    SQUID magnetometry of superconducting samples: A practical guide.
    In P. S. Lewis (ed.), Trends in Superconductivity Research, pp. 39–61 (NOVA Science Publishers, 2004).
    ISBN: 1-59454-058-6.
    http://www.novapublishers.org/catalog/product_info.php?products_id=380
     [TOP]
  129. T. M. Seixas, J. M. Machado da Silva, T. P. Papageorgiou, H. F. Braun, and G. Eska.
    Spin reorientation transition in Gd4Co3.
    Physica B 353 (2004) 34–40.
    doi: 10.1016/j.physb.2004.08.023
     [TOP]
  130. H. F. Braun.
    A phase diagram approach to magnetic superconductors.
    In A. V. Narlikar (ed.), Frontiers in Superconducting Materials, pp. 365–391 (Springer Verlag, 2005).
    ISBN: 978-3-540-27294-6.
    http://www.springer.com/materials/book/978-3-540-27294-6
     [TOP]
  131. S. Deeken, S. Proch, E. Casini, H. F. Braun, C. Mechtler, C. Marschner, G. Motz, and R. Kempe.
    Group 10 metal aminopyridinato complexes: Synthesis, structure, and application as aryl-Cl activation and hydrosilane polymerization catalysts.
    Inorg. Chem. 45(4) (2006) 1871–1879.
    doi: 10.1021/ic0518273
     [TOP]
  132. N. Dubrovinskaia, L. Dubrovinsky, N. Miyajima, F. Langenhorst, W. A. Crichton, and H. F. Braun.
    High pressure/high temperature synthesis and characterization of boron-doped diamond.
    Z. Naturforsch. 61b (2006) 1561–1565.
    http://www.znaturforsch.com/ab/v61b/c61b.htm
     [TOP]
  133. N. Dubrovinskaia, G. Eska, G. A. Sheshin, and H. Braun.
    Superconductivity in polycrystalline boron-doped diamond synthesized at 20 GPa and 2700 K.
    J. Appl. Phys. 99(3) (2006) 033903.
    doi: 10.1063/1.2166645
     [TOP]
  134. T. P. Papageorgiou, E. Casini, H. F. Braun, T. Herrmannsdörfer, A. D. Bianchi, and J. Wosnitza.
    Magnetization, vortex state and specific heat in the superconducting state of RuSr2GdCu2O8.
    Eur. Phys. J. B 52 (2006) 383–388.
    doi: 10.1140/epjb/e2006-00317-4
     [TOP]
  135. T. P. Papageorgiou, E. Casini, Y. Skourski, T. Herrmannsdörfer, J. Freudenberger, H. F. Braun, and J. Wosnitza.
    High magnetic field study of RuSr2GdCu2O8.
    J. Phys.: Conf. Ser. 51 (2006) 411–414.
    doi: 10.1088/1742-6596/51/1/095
     [TOP]
  136. E. Casini, T. P. Papageorgiou, T. Herrmannsdörfer, J. Wosnitza, and H. F. Braun.
    Effect of the Ru content on the phase equilibria in the RuSr2GdCu2O8 synthesis.
    Physica C 460-462 (2007) 401–402.
    doi: 10.1016/j.physc.2007.03.099
     [TOP]
  137. A. Karelina, H. F. Braun, M. Endres, and D. Rainer.
    The two-dimensional vibrating reed: A study of anisotropic pinning in high-temperature superconductors.
    J. Low Temp. Phys. 146 (2007) 681–695.
    doi: 10.1007/s10909-006-9288-3
     [TOP]
  138. T. P. Papageorgiou, E. Casini, H. F. Braun, T. Herrmannsdörfer, A. D. Bianchi, and J. Wosnitza.
    Superconducting properties of RuSr2RECu2O8 (RE=Eu,Gd).
    J. Magn. Magn. Mater. 310 (2007) 520–522.
    doi: 10.1016/j.jmmm.2006.10.090
     [TOP]
  139. T. P. Papageorgiou, E. Casini, Y. Skourski, T. Herrmannsdörfer, J. Freudenberger, H. F. Braun, and J. Wosnitza.
    Magnetic and superconducting properties of RuSr2GdCu2O8.
    Physica C 460-462 (2007) 390–391.
    doi: 10.1016/j.physc.2007.03.060
     [TOP]
  140. T. P. Papageorgiou, E. Casini, Y. Skourski, T. Herrmannsdörfer, J. Freudenberger, H. F. Braun, and J. Wosnitza.
    Magnetization of RuSr2GdCu2O8 in pulsed magnetic fields up to 47 T.
    Phys. Rev. B 75 (2007) 104513.
    doi: 10.1103/PhysRevB.75.104513
     [TOP]
  141. M. M. Abu-Samreh, A. M. Saleh, R. M.-L. Kitaneh, and H. F. Braun.
    On the applicability of the magnetic susceptibility models for the magnetic superconductor Ru-1212.
    J. Supercond. Nov. Magn. 21 (2008) 57–63.
    doi: 10.1007/s10948-007-0297-5
     [TOP]
  142. T. M. Seixas, J. M. Machado da Silva, H. F. Braun, and G. Eska.
    Electrical resistivity of Gd4(Co1-xCux)3 compounds.
    J. Appl. Phys. 103 (2008) 07B720–3.
    doi: 10.1063/1.2831800
     [TOP]
  143. A. M. Saleh, M. M. Abu-Samreh, R. M.-L. Kitaneh, and H. F. Braun.
    Dependencies of inter- and intragrain superconductive transitions in polycrystalline RuSr2GdCu2O8 superconductor on field and frequency.
    Solid State Sci. 10 (2008) 198–204.
    doi: 10.1016/j.solidstatesciences.2007.07.039
     [TOP]
  144. N. Dubrovinskaia, L. Dubrovinsky, T. Papageorgiou, A. Bosak, M. Krisch, H. F. Braun, and J. Wosnitza.
    Large carbon-isotope shift of Tc in boron-doped diamond.
    Appl. Phys. Lett. 92 (2008) 132506–3.
    doi: 10.1063/1.2906381
     [TOP]
  145. T. M. Seixas, M. A. Salgueiro da Silva, O. F. de Lima, J. Lopez, H. F. Braun, and G. Eska.
    Spin disorder resistivity and electronic specific heat of Gd4(Co1-xCux)3 compounds.
    Mater. Sci. Forum 587-588 (2008) 333–337.
    doi: 10.4028/www.scientific.net/MSF.587-588.333
     [TOP]
  146. N. Dubrovinskaia, R. Wirth, J. Wosnitza, T. Papageorgiou, H. F. Braun, N. Miyajima, and L. Dubrovinsky.
    An insight into what superconducts in polycrystalline boron-doped diamonds based on investigations of microstructure.
    Proc. Natl. Acad. Sci. 105 (2008) 11619–11622.
    doi: 10.1073/pnas.0801520105
     [TOP]
  147. T. M. Seixas, M. A. Salgueiro da Silva, H. F. Braun, and G. Eska.
    Magnetic behavior and phase diagram of Gd4(Co1-xCux)3 compounds.
    J. Appl. Phys. 105 (2009) 07E102–3.
    doi: 10.1063/1.3062817
     [TOP]
  148. T. M. Seixas, M. A. Salgueiro da Silva, O. F. de Lima, J. López, H. F. Braun, and G. Eska.
    Electronic band effects on the spin disorder resistivity of Gd4(Co1-xCux)3 compounds.
    J. Phys.: Condens. Matter 21(19) (2009) 195603.
    ISSN 0953-8984.
    doi: 10.1088/0953-8984/21/19/195603
     [TOP]
  149. E. Casini, M. Kempf, J. Krämer, and H. F. Braun.
    Effect of chemical composition on superconductivity and magnetism in layered ruthenocuprates.
    J. Phys.: Condens. Matter 21 (2009) 254210.
    ISSN 0953-8984.
    doi: 10.1088/0953-8984/21/25/254210
     [TOP]
  150. E. Y. Zarechnaya, L. Dubrovinsky, N. Dubrovinskaia, Y. Filinchuk, D. Chernyshov, V. Dmitriev, N. Miyajima, A. E. Goresy, H. F. Braun, S. van Smaalen, I. Kantor, A. Kantor, V. Prakapenka, M. Hanfland, A. S. Mikhaylushkin, I. A. Abrikosov, and S. I. Simak.
    Superhard semiconducting optically transparent high pressure phase of boron.
    Phys. Rev. Lett. 102(18) (2009) 185501.
    doi: 10.1103/PhysRevLett.102.185501
     [TOP]
  151. N. Dubrovinskaia, R. Wirth, J. Wosnitza, T. Papageorgiou, H. F. Braun, N. Miyajima, and L. Dubrovinsky.
    Dissolution of boron in diamond under high pressures: experimental evidences.
    Acta Crystallographica Section A 65(a1) (2009) s343.
    doi: 10.1107/S0108767309092708
     [TOP]
  152. T. M. Seixas, M. A. S. da Silva, O. F. de Lima, J. Lopez, H. F. Braun, and G. Eska.
    Specific heat of Gd4Co3.
    J. Phys.: Condens. Matter 22(13) (2010) 136002.
    doi: 10.1088/0953-8984/22/13/136002
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  153. T. M. Seixas, M. A. Salgueiro da Silva, H. F. Braun, and G. Eska.
    Thermoelectric power of Gd4(Co1-xCux)3 compounds.
    J. Appl. Phys. 109(7) (2011) 07E110.
    doi: 10.1063/1.3549597
     [TOP]
  154. T. M. Seixas, M. A. Salgueiro da Silva, H. F. Braun, and G. Eska.
    Thermoelectric power of Gd4(Co-A)3 compounds (A = Cu, Pt).
    Materials Science Forum 730-732 (2012) 159–163.
    ISSN 1662-9752.
    doi: 10.4028/www.scientific.net/MSF.730-732.159
     [TOP]

Hans F. Braun - Impressum - Kontakt

Physikalisches Institut