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Gerhard Jakob

Prof. (apl.) Dr. Gerhard Jakob

Johannes Gutenberg-Universität Mainz

Staudinger Weg 7, 55099 Mainz, Raum: 01-430

  • 06131/3924133
  • 06131/3924076
Publikationen
Ergebnisse pro Seite:  10

Jakob, Gerhard; Hahn, Th.; Stölzel, C. et al.

Transport Properties of YBa2Cu3O7/PrBa2Cu3O7 Superlattices

EPL : Europhysics Letters. Bd. 19. 1992 S. 135 - 136


Adrian, Hermann; Walkenhorst, A.; Tomé-Rosa, C. et al.

Anisotropy of the depinning field and the pinning force density of thin epitaxial YBa2Cu3O7 films

Physica C. Bd. 177. 1991 S. 165 - 170


Adrian, Hermann; Jakob, G.; Przyslupski, P. et al.

Anisotropy of the pinning force density and the resistive transitions in YBa2Cu3O7/PrBa2Cu3O7 superlattices

Physica C. Bd. 185-189. 1991 S. 2087 - 2088


Tomé-Rosa, C.; Jakob, Gerhard; Walkenhorst, A. et al.

Critical current density and upper critical field of YBa2Cu3O7 thin films

Zeitschrift für Physik / B. Bd. 83. 1991 S. 221 - 222


Jakob, Gerhard; Przyslupski, P.; Stölzel, C. et al.

High-superconducting critical current densities in YBa2Cu3O7/PrBa2Cu3O7 superlattices

Applied physics letters. Bd. 59. 1991 S. 1626 - 1628


Tomé-Rosa, C.; Jakob, Gerhard; Paulson, M. et al.

Thermally activated flux-flow in epitaxially grown YBa2(Cu1−χZnχ)3O7− thin films

Physica C: Superconductivity. Bd. 185-189. 1991 S. 2175 - 2177


Adrian, Hermann; Tomé-Rosa, C.; Jakob, Gerhard et al.

Thin film preparation, transport properties and superconductivity of YBa2Cu3O7

Superconductor Science and Technology. Bd. 4. 1991 S. 166 - 168


Adrian, Hermann; Przyslupski, P.; Baczewski, L.T. et al.

Fabrication of in-situ superconducting thin films of (Y,Tm)-Ba-Cu-O on SrTiO3, NdAlCaO4 and LaGaO3 substrates

Physica B. Bd. 165&166. 1990 S. 1475 - 1476


Tomé-Rosa, C.; Jakob, G.; Maul, M. et al.

Growth of high quality YBa2Cu3O7 films on various substrate materials and influence of Zn-doping on superconductivity

Physica C. Bd. 171. H. 3-4. Elsevier 1990 S. 231 - 237


Adrian, Hermann; Jakob, G.; Huth, M. et al.

Influence of composition and long term annealing on the formation of the 110K phase in the Bi-Pb-Sr-Ca-Cu-O system

Physica B. Bd. 165&166. 1990 S. 1677 - 1678