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Dive into the research topics where D. Rainer is active.

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Featured researches published by D. Rainer.


Physical Review Letters | 1997

TUNNELING INTO CURRENT-CARRYING SURFACE STATES OF HIGH-TC SUPERCONDUCTORS

M. Fogelström; D. Rainer; J. A. Sauls

Theoretical results for the


Physical Review B | 1996

Electronic thermal conductivity and the Wiedemann-Franz law for unconventional superconductors

M. J. Graf; S. K. Yip; J. A. Sauls; D. Rainer

\mathrm{ab}


Journal of Low Temperature Physics | 1995

Thermodynamics of a d-wave superconductor near a surface

Louis J. Buchholtz; Mario Palumbo; D. Rainer; J. A. Sauls

-plane tunneling conductance in the


Physica C-superconductivity and Its Applications | 1989

Holstein effect in the far-infrared conductivity of high Tc superconductors

W. Lee; D. Rainer; W. Zimmermann

d


Physical Review B | 1995

INFRARED CONDUCTIVITY IN LAYERED D-WAVE SUPERCONDUCTORS

M. J. Graf; Mario Palumbo; D. Rainer; J. A. Sauls

-wave model for high-


Journal of Low Temperature Physics | 1995

The effect of surfaces on the tunneling density of states of an anisotropically paired superconductor

Louis J. Buchholtz; Mario Palumbo; D. Rainer; J. A. Sauls

{T}_{c}


Physical Review B | 1996

CURRENT CARRIED BY BOUND STATES OF A SUPERCONDUCTING VORTEX

D. Rainer; J. A. Sauls; D. Waxman

superconductors are presented. The


Journal of Low Temperature Physics | 2000

Interplay of Fulde-Ferrell-Larkin-Ovchinnikov and Vortex states in two-dimensional Superconductors

U. Klein; D. Rainer; Hiroshi Shimahara

d


Physical Review B | 1999

Electromagnetic response of a vortex in layered superconductors

Matthias Eschrig; J. A. Sauls; D. Rainer

-wave model predicts surface bound states below the maximum gap. A subdominant order parameter, stabilized by the surface, leads to a splitting of the zero-bias conductance peak (ZBCP) in zero external field and to spontaneous surface currents. In a magnetic field, screening currents shift the bound state spectrum, leading to a splitting of the ZBCP that is linear in


Progress in low temperature physics | 1986

Chapter 4: Principles of AB Initio Calculations of Superconducting Transition Temperatures

D. Rainer

H

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J. A. Sauls

Northwestern University

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J. E. Gubernatis

Los Alamos National Laboratory

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Louis J. Buchholtz

California State University

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Mauro M. Doria

Los Alamos National Laboratory

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M. J. Graf

Northwestern University

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P. M. Tedrow

Massachusetts Institute of Technology

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