Pairing of spinless fermions in two dimensions.

We study the real-space pairing instability of spinless fermions on a two-dimensional square lattice with short-range attractive interactions. Various symmetries of the pairing order parameter are considered. It is found that in both nonflux and flux phases the most stable pairing state is chiral an...

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Asıl Yazarlar: Lu, J, Barford, W
Materyal Türü: Journal article
Dil:English
Baskı/Yayın Bilgisi: 1991
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author Lu, J
Barford, W
author_facet Lu, J
Barford, W
author_sort Lu, J
collection OXFORD
description We study the real-space pairing instability of spinless fermions on a two-dimensional square lattice with short-range attractive interactions. Various symmetries of the pairing order parameter are considered. It is found that in both nonflux and flux phases the most stable pairing state is chiral and anisotropic. It breaks both the parity and the time-reversal symmetries. The quasiparticle excitation has a minimum gap which could be much smaller than its average over the Fermi surface. The temperature dependence of the order parameter and the critical magnetic field are found to be similar to those of the classical BCS solutions. A possible connection with the high-temperature superconductivity is discussed. © 1991 The American Physical Society.
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spelling oxford-uuid:7c0fa914-2532-472d-9033-d1fd2a7de7a52022-03-26T20:54:37ZPairing of spinless fermions in two dimensions.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:7c0fa914-2532-472d-9033-d1fd2a7de7a5EnglishSymplectic Elements at Oxford1991Lu, JBarford, WWe study the real-space pairing instability of spinless fermions on a two-dimensional square lattice with short-range attractive interactions. Various symmetries of the pairing order parameter are considered. It is found that in both nonflux and flux phases the most stable pairing state is chiral and anisotropic. It breaks both the parity and the time-reversal symmetries. The quasiparticle excitation has a minimum gap which could be much smaller than its average over the Fermi surface. The temperature dependence of the order parameter and the critical magnetic field are found to be similar to those of the classical BCS solutions. A possible connection with the high-temperature superconductivity is discussed. © 1991 The American Physical Society.
spellingShingle Lu, J
Barford, W
Pairing of spinless fermions in two dimensions.
title Pairing of spinless fermions in two dimensions.
title_full Pairing of spinless fermions in two dimensions.
title_fullStr Pairing of spinless fermions in two dimensions.
title_full_unstemmed Pairing of spinless fermions in two dimensions.
title_short Pairing of spinless fermions in two dimensions.
title_sort pairing of spinless fermions in two dimensions
work_keys_str_mv AT luj pairingofspinlessfermionsintwodimensions
AT barfordw pairingofspinlessfermionsintwodimensions