Joy Y. Cheng, Daniel P. Sanders, et al.
SPIE Advanced Lithography 2008
The structure of the plasmon and phonon bands in conducting, highly anisotropic layered materials is studied. The observed high superconducting transition temperatures are caused, in our view, by the coexistence of strong electronphonon coupling and the plasmon mechanism. A generalized Eliashberg equation describing the effects of phonons and plasmons on the pairing is presented. Our approach is based on the method of thermodynamic Green's functions. We point out connections to experiments and briefly comment on other models. © 1988 Plenum Publishing Corporation.
Joy Y. Cheng, Daniel P. Sanders, et al.
SPIE Advanced Lithography 2008
Oliver Schilter, Alain Vaucher, et al.
Digital Discovery
I.K. Pour, D.J. Krajnovich, et al.
SPIE Optical Materials for High Average Power Lasers 1992
R.D. Murphy, R.O. Watts
Journal of Low Temperature Physics