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kw.\*:("Théorie Eliashberg")

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CURRENT DEPENDENCE OF GAP ENHANCEMENT BY MICROWAVESWEISS K.1981; PHYS. LETT. SECT. A; ISSN 0375-9601; NLD; DA. 1981; VOL. 82; NO 8; PP. 422-428; BIBL. 28 REF.Article

Enhancement of superconductivity by quasiparticle injection. II: Critical current experiments = Augmentation de la supraconductivité par injection de quasi-particules. II: Expériences de courant critiqueVAN DEN HAMER, P; MONTIE, E. A; MEIJER, P. B. L et al.Journal of low temperature physics. 1987, Vol 69, Num 3-4, pp 287-311, issn 0022-2291Article

Strong coupling effects on the low frequency conductivity of superconductorsAKIS, R; CARBOTTE, J. P.Solid state communications. 1991, Vol 79, Num 7, pp 577-581, issn 0038-1098Article

The influence of disorder on the superconductivity transition temperature of simple amorphous metals. IIIKRASNY, YU. P; KOVALENKO, N. P.Physica B, Condensed matter. 1990, Vol 162, Num 2, pp 128-132, 5 p.Article

Magnetization of low-κ superconductors. III: The generalized Ginzburg- Landau parameters κ1 and κ2 = Aimantation des supraconducteurs à bas K. III. Les paramètres de Ginzburg-Landau généralisés K1 et K2SEIDL, E; LAA, C; WIESINGER, H. P et al.Physica. C, Superconductivity. 1989, Vol 161, Num 3, pp 294-301Article

Eliashberg theory and the high Tc oxidesMARSIGLIO, F; CARBOTTE, J. P.Solid state communications. 1987, Vol 63, Num 5, pp 419-423, issn 0038-1098Article

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