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相关论文: Density-Wave and Antiferromagnetic States of Fermi…

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We investigate three-component (colors) repulsive fermionic atoms in optical lattices using the dynamical mean field theory. Depending on the anisotropy of the repulsive interactions, either a color density-wave state or a color selective…

量子气体 · 物理学 2010-12-14 Shin-ya Miyatake , Kensuke Inaba , Sei-ichiro Suga

The superfluid-insulator transitions of the fermionic atoms in optical lattices are investigated by the two-site dynamical mean-field theory. It is shown that the Mott transition occurs as a result of the multiband effects. The…

其他凝聚态物理 · 物理学 2009-11-13 Takuji Higashiyama , Kensuke Inaba , Sei-ichiro Suga

We study the effect of mass imbalance on the phase diagram of a two-component fermionic mixture with attractive interactions in optical lattices. Using static and dynamical mean-field theories, we show that the pure superfluid phase is…

超导电性 · 物理学 2008-04-17 Tung-Lam Dao , Antoine Georges , Massimo Capone

In a dipolar Fermi gas, the dipole-dipole interaction between fermions can be turned into a dipolar Ising interaction between pseduospins in the presence of an AC electric field. When trapped in a 2D optical lattice, such a dipolar Fermi…

量子气体 · 物理学 2015-05-28 Bo Liu , Lan Yin

We numerically study a gas of two-component fermions coupled to a transversely pumped optical cavity and confined to a two-dimensional static square optical lattice. In the dispersive regime, the steady state of the system is described by…

量子气体 · 物理学 2026-03-17 Renan da Silva Souza , Youjiang Xu , Walter Hofstetter

We study a model of a 2D ultracold atomic gas subject to an "optical flux lattice": a laser configuration where Raman-dressed atoms experience a strong artificial magnetic field. This leads to a bandstructure of narrow energy bands with…

量子气体 · 物理学 2015-08-19 Simon C. Davenport , Nigel R. Cooper

We examine antiferromagnetic and d-wave superfluid phases of cold fermionic atoms with repulsive interactions in a two-dimensional optical lattice combined with a harmonic trapping potential. For experimentally realistic parameters, the…

强关联电子 · 物理学 2007-10-22 Brian M. Andersen , G. M. Bruun

We study a mixture of fermionic and bosonic cold atoms on a two-dimensional optical lattice, where the fermions are prepared in two hyperfine (isospin) states and the bosons have Bose-Einstein condensed (BEC). The coupling between the…

超导电性 · 物理学 2007-10-30 F. D. Klironomos , S. -W. Tsai

We carry out \textit{ab initio} study of ground state phase diagram of spin-1/2 cold fermionic atoms within two-fold degenerate $p$-band of an anisotropic optical lattice. Using the Gutzwiller variational approach, we show that a robust…

强关联电子 · 物理学 2010-04-08 Lei Wang , Xi Dai , Shu Chen , X. C. Xie

We present a novel and comprehensive microscopic study of Luther-Emery-paired phases in a strongly interacting atomic Fermi gas inside a parabolic trap and a one-dimensional (1D) optical lattice. Our work is based on a lattice version of…

强关联电子 · 物理学 2012-08-27 Gao Xianlong , Marco Polini , Mario P. Tosi , Vivaldo L. Campo, , Klaus Capelle

The ground-state superfluid behavior of ultracold atomic Fermi gases with a short-range attractive interaction in a quasi-two-dimensional Lieb lattice is studied using BCS mean-field theory, within the context of BCS-BEC crossover. We find…

量子气体 · 物理学 2024-03-27 Hao Deng , Chuping Li , Yuxuan Wu , Lin Sun , Qijin Chen

We review our theoretical analysis of repulsively interacting three-component fermionic atoms in optical lattices. We discuss quantum phase transitions at around half filling with a balanced population by focusing on Mott transitions,…

量子气体 · 物理学 2013-05-10 Kensuke Inaba , Sei-ichiro Suga

We study a simple model of N-component fermions with contact interactions which describes fermionic atoms with N=2F+1 hyperfine states loaded into a one-dimensional optical lattice. We show by means of analytical and numerical approaches…

强关联电子 · 物理学 2011-10-13 S. Capponi , G. Roux , P. Lecheminant , P. Azaria , E. Boulat , S. R. White

Fermionic atoms in two different hyperfine states confined in optical lattices show strong commensurability effects due to the interplay between the atomic density wave (ADW) ordering and the lattice potential. We show that spatially…

强关联电子 · 物理学 2009-11-13 Rafael A. Molina , Jorge Dukelsky , Peter Schmitteckert

We model a system of ultracold fermionic dipolar molecules on a two-dimensional square lattice. Assuming that the molecules are in their nondegenerate hyperfine ground state, and that the dipole moment is polarized perpendicular to the…

量子气体 · 物理学 2011-04-15 K. Mikelsons , J. K. Freericks

We investigate the finite-temperature properties of attractive three-component (colors) fermionic atoms in optical lattices using a self-energy functional approach. As the strength of the attractive interaction increases in the low…

量子气体 · 物理学 2011-05-30 Kensuke Inaba , Sei-ichiro Suga

We investigate the superfluid state of repulsively interacting three-component (color) fermionic atoms in optical lattices. When the anisotropy of the three repulsive interactions is strong, atoms of two of the three colors form Cooper…

量子气体 · 物理学 2012-07-03 Kensuke Inaba , Sei-ichiro Suga

In this paper, we investigate the ground state properties of a mixture of two species of fermionic atoms in one-dimensional optical lattice, as described by the asymmetric Hubbard model. The quantum phase transition from density wave to…

强关联电子 · 物理学 2009-11-11 Shi-Jian Gu , Rui Fan , Hai-Qing Lin

We study the density-wave states of quasi-one-dimensional atomic gas mixture of one- and two-component boson and fermion using the mean-field approximation. Owing to the Peierls instability in the quasi-one-dimensional fermion system, the…

其他凝聚态物理 · 物理学 2009-11-10 E. Nakano , H. Yabu

We discuss the emergence of p-wave superfluidity of identical atomic fermions in a two-dimensional optical lattice. The optical lattice potential manifests itself in an interplay between an increase in the density of states on the Fermi…

量子气体 · 物理学 2017-04-20 A. K. Fedorov , V. I. Yudson , G. V. Shlyapnikov
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