The superconducting proximity effect as a tool to investigate metal films and interfaces
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[1] G. Bergmann,et al. Host-dependent electronic structure of vanadium impurities in different alkali metals , 2003 .
[2] G. Bergmann,et al. Modest magnetic moments of Ti impurities on the surface and in the bulk of K, Rb, and Cs films , 2002 .
[3] G. Bergmann,et al. Strongly enhanced magnetic moments of vanadium impurities in thin films of sodium and potassium. , 2002, Physical review letters.
[4] G. Bergmann,et al. Giant moments of Fe and Co on and in rubidium aaand potassium films , 2002 .
[5] G. Bergmann,et al. Magnetic behavior of na films with Fe, Co, and Ni impurities. , 2001, Physical review letters.
[6] P. Hakonen,et al. Inverse proximity effect in superconductors near ferromagnetic material , 2001, cond-mat/0102367.
[7] G. Bergmann,et al. The mystery of the alkali metals; the induced anomalous Hall effect in thin Cs films , 2000 .
[8] G. Bergmann,et al. Spin-orbit scattering of Pb and Bi impurities in Cs, K, and Na films , 1999 .
[9] G. Bergmann,et al. MYSTERY OF THE ALKALI METALS : GIANT MOMENTS OF FE AND CO ON AND IN CS FILMS , 1999 .
[10] G. Bergmann,et al. WEAK LOCALIZATION IN THIN CS FILMS , 1999 .
[11] R. Mints,et al. Proximity-effect enhancement induced by roughness of the superconductor-normal-metal interface , 1998 .
[12] Volkov,et al. Phase-coherent conductance of a superconductor-normal-metal quantum interferometer. , 1996, Physical review. B, Condensed matter.
[13] C. Lambert,et al. Crossover from mesoscopic to classical proximity effects, induced by particle-hole symmetry breaking in Andreev interferometers , 1996 .
[14] A. Zaitsev. Phase-coherent conductance of mesoscopic superconductor-normal-metal coupled systems , 1994 .
[15] A. Zaitsev. On the theory of superconducting structures SS′ -S and S′ -N with potential barriers at the metal interfaces , 1991 .
[16] W. Farr. Springer Tracts in Modern Physics , 1977 .
[17] Eckard Specht,et al. PHYSIK , 2018 .
[18] G. Bergmann. A simple model for the time dependent Ginzburg Landau equation , 1970 .
[19] G. V. Minnigerode. Zur Kontaktwirkung in supraleitenden Doppelschichten aus Cu/Pb , 1966 .
[20] N. Werthamer,et al. Superconductivity in Cu and Pt by Means of Superimposed Films with Lead , 1964 .
[21] N. R. Werthamer,et al. THEORY OF THE SUPERCONDUCTING TRANSITION TEMPERATURE AND ENERGY GAP FUNCTION OF SUPERPOSED METAL FILMS , 1963 .
[22] G. Z. Zu Rhein,et al. Familial idiocy with spongy degeneration of the central nervous system of van Bogaert—Bertrand type , 1960, Neurology.
[23] R. Hilsch,et al. Zum Verhalten von Supraleitern im Kontakt mit Normalleitern , 2004, Naturwissenschaften.
[24] Nagai,et al. Superconducting transition temperature of proximity-contact superconducting-normal double layers. , 1992, Physical review. B, Condensed matter.
[25] G. Bergmann. Kohärenzeffekte in Doppelschichten aus verschiedenen Supraleitern , 1965 .
[26] P. Gennes. Boundary Effects in Superconductors , 1964 .
[27] R. Hilsch,et al. Zur Supraleitung von Schichtpaketen aus Normal- und Supraleitern , 1964 .
[28] E. Guyon,et al. Superconductivity in “normal” metals , 1963 .