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Unconventional interaction between vortices in a polarized Fermi gas

机译:极化费米气体中涡旋之间的非常规相互作用

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Recently, a homogeneous superfluid state with a single gapless Fermi surface was predicted to be the ground state of an ultracold Fermi gas with spin population imbalance in the regime of molecular Bose-Einstein condensation. We study vortices in this novel state using a symmetry-based effective field theory, which captures the low-energy physics of gapless fermions and superfluid phase fluctuations. This theory is applicable to all spin-imbalanced ultracold Fermi gases in the superfluid regime, regardless of whether the original fermion-pairing interaction is weak or strong. We find a remarkable, unconventional form of the interaction between vortices. The presence of gapless fermions gives rise to a spatially oscillating potential, akin to the RKKY indirect-exchange interaction in non-magnetic metals. We compare the parameters of the effective theory to the experimentally measurable quantities and further discuss the conditions for the verification of the predicted new feature. Our study opens up an interesting question as to the nature of the vortex lattice resulting from the competition between the usual repulsive logarithmic (2D Coulomb) and predominantly attractive fermion-induced interactions. (C) 2007 Elsevier Inc. All rights reserved.
机译:近来,具有单一无隙费米表面的均质超流体状态被预测为超冷费米气体的基态,该费米气体在分子玻色-爱因斯坦凝聚态下具有自旋种群失衡。我们使用基于对称的有效场理论研究这种新型状态下的涡旋,该理论捕获了无间隙费米子和超流体相波动的低能物理。该理论适用于超流体状态下的所有自旋不平衡超冷费米气体,而不管原始费米对配对的相互作用是弱还是强。我们发现涡流之间相互作用的一种非同寻常的非常规形式。与无磁性金属中的RKKY间接交换相互作用类似,无间隙费米子的存在会引起空间振荡势。我们将有效理论的参数与实验可测量的量进行比较,并进一步讨论了验证预测的新特征的条件。我们的研究提出了一个有趣的问题,即由通常的对数对数(2D库仑)与费米子引起的有吸引力的相互作用之间的竞争所产生的旋涡晶格的性质。 (C)2007 Elsevier Inc.保留所有权利。

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