Superconductivity in a Doped Mott Insulator
- 20 March 2000
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review Letters
- Vol. 84 (12) , 2694-2697
- https://doi.org/10.1103/physrevlett.84.2694
Abstract
Starting from the -wave resonating-valence-bond mean-field theory of Kotliar and Liu, we present a new, long-wavelength/low-energy exact, treatment of gauge fluctuations. The result is a theory of gapless fermion quasiparticles coupled to superconducting phase fluctuations. We will discuss the physical implications, and the similarity and differences to a theory of superconductors with phase fluctuations.
Keywords
All Related Versions
This publication has 32 references indexed in Scilit:
- Photoemission Evidence for a Remnant Fermi Surface and a d- Wave-Like Dispersion in Insulating Ca 2 CuO 2 Cl 2Science, 1998
- Evidence for Quasiparticle Decay in Photoemission from Underdoped CupratesPhysical Review Letters, 1997
- Excitation Gap in the Normal State of Underdoped Bi 2 Sr 2 CaCu 2 O 8+ δScience, 1996
- Spectroscopic evidence for a pseudogap in the normal state of underdoped high-Tc superconductorsNature, 1996
- Unconventional Electronic Structure Evolution with Hole Doping in: Angle-Resolved Photoemission ResultsPhysical Review Letters, 1996
- Superexchange mechanism andd-wave superconductivityPhysical Review B, 1988
- Mean Field Theory of RVB and SuperconductivityJournal of the Physics Society Japan, 1988
- Resonating valence bonds andd-wave superconductivityPhysical Review B, 1988
- Large-nlimit of the Heisenberg-Hubbard model: Implications for high-superconductorsPhysical Review B, 1988
- The Resonating Valence Bond State in La 2 CuO 4 and SuperconductivityScience, 1987