Based on the X-operator approach and a 1/N expansion, we present results for the phase diagram and in particular, the incommensurate flux phase of a generalized t-J model which also contains Coulomb interactions. It is found that the optimal T-c for superconductivity as well as the fast decrease of T-c in the underdoped regime is the result of a competition between an incommensurate flux and a superconducting phase, both having order parameters with d-wave symmetry. A charge-density wave ground state is found only at rather low dopings far away from the superconducting phase. The evolution of the single-particle gap and the associated destruction of a part of the Fermi surface are studied by means of the dispersion and density of electronic states and the optical conductivity.

Competition of an incommensurate flux phase and superconductivity in a t-J model with Coulomb interactions

E Cappelluti;
1999

Abstract

Based on the X-operator approach and a 1/N expansion, we present results for the phase diagram and in particular, the incommensurate flux phase of a generalized t-J model which also contains Coulomb interactions. It is found that the optimal T-c for superconductivity as well as the fast decrease of T-c in the underdoped regime is the result of a competition between an incommensurate flux and a superconducting phase, both having order parameters with d-wave symmetry. A charge-density wave ground state is found only at rather low dopings far away from the superconducting phase. The evolution of the single-particle gap and the associated destruction of a part of the Fermi surface are studied by means of the dispersion and density of electronic states and the optical conductivity.
1999
Inglese
312
313
320
8
http://www.sciencedirect.com/science/article/pii/S0921453498006650
Sì, ma tipo non specificato
1
info:eu-repo/semantics/article
262
E. Cappelluti; R. Zeyher
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/234337
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