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首页> 外文期刊>Annals of Physics >Resonantly paired fermionic superfluids
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Resonantly paired fermionic superfluids

机译:共振配对的铁离子超流体

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We present a theory of a degenerate atomic Fermi gas, interacting through a narrow Feshbach resonance, whose position and therefore strength can be tuned experimentally, as demonstrated recently in ultracold trapped atomic gases. The distinguishing feature of the theory is that its accuracy is controlled by a dimensionless parameter proportional to the ratio of the width of the resonance to Fermi energy. The theory is therefore quantitatively accurate for a narrow Feshbach resonance. In the case of a narrow s-wave resonance, our analysis leads to a quantitative description of the crossover between a weakly paired BCS superconductor of overlapping Cooper pairs and a strongly paired molecular Bose-Einstein condensate of diatomic molecules. In the case of pairing via a p-wave resonance, that we show is always narrow for a sufficiently low density, we predict a detuning-temperature phase diagram, that in the course of a BCS-BEC crossover can exhibit a host of thermodynamically distinct phases separated by quantum and classical phase transitions. For an intermediate strength of the dipolar anisotropy, the system exhibits a p(x) + ip(y) paired superfluidity that undergoes a topological phase transition between a weakly coupled gapless ground state at large positive detuning and a strongly paired fully gapped molecular superfluid for a negative detuning. In two dimensions the former state is characterized by a Pfaffian ground state exhibiting topological order and non-Abelian vortex excitations familiar from fractional quantum Hall systems. (c) 2006 Elsevier Inc. All rights reserved.
机译:我们提出了一种简并原子费米气体的理论,该费米气体通过狭窄的Feshbach共振相互作用,其位置和强度可以通过实验进行调整,如最近在超冷阱原子气体中所证明的。该理论的显着特征是其精度受与共振宽度与费米能量之比成比例的无量纲参数控制。因此,该理论对于狭窄的Feshbach共振在定量上是准确的。在窄s波谐振的情况下,我们的分析导致了对重叠的Cooper对的弱配对BCS超导体与双原子分子的强配对分子Bose-Einstein缩合物之间的交叉的定量描述。在通过p波谐振进行配对的情况下,对于足够低的密度,我们总是显示狭窄,我们预测了失谐温度相图,表明在BCS-BEC交叉过程中可以表现出许多热力学上不同的由量子相变和经典相变分隔的相。对于偶极各向异性的中等强度,系统表现出ap(x)+ ip(y)配对的超流体,该配对流体在较大的正失谐状态下在弱耦合的无隙基态与强配对的完全带隙分子超流体之间经历拓扑相变。负失谐。在二维上,前一个态的特征是表现出拓扑阶的Pfaffian基态和分数量子霍尔系统所熟悉的非阿贝尔涡旋激发。 (c)2006 Elsevier Inc.保留所有权利。

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