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Spintronics / Charge carriers / Quantum phases / BCS theory / Quasiparticle / Electron / Ginzburg–Landau theory / Phonon / Quantum field theory / Physics / Condensed matter physics / Superconductivity


ELECTRON-PHONON INTERACTIONS AND SUPERCONDUCTIVITY Nobel Lecture, December 11, 1972
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Document Date: 2006-05-31 16:53:37


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JOHN BARDEEN / Bell Telephone Laboratories / /

Facility

Electrical Engineering University of Illinois Urbana / Rutgers University / University of Illinois / Purdue University / University of Pennsylvania / /

IndustryTerm

metal / phonon self-energy / energy change 6w / quasi-particle energy renormalization / phonon self-energy corrections / self-energy / phonon energy / energy gap / energy range / electron self-energy / energy gaps / normal metal / isotropic systems / bare electron quasiparticle energy / energy dependence / energy eV / condensation energy / energy difference / numerical solutions / energy gap model / energy / /

NaturalFeature

Fermi sea / /

OperatingSystem

Fermi / /

Organization

Royal Society in London / University of Illinois / U. S. National Bureau of Standards / Rutgers University / Electrical Engineering University of Illinois Urbana / the University of Pennsylvania / Purdue University / /

Person

ELIASHBERG THEORY FOR SU / Migdal / David Shoenberg / Fritz London / Schrieffer / /

ProvinceOrState

Pennsylvania / Illinois / /

Technology

semiconductors / thermodynamics / condensation / /

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