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首页> 外文期刊>Journal of Low Temperature Physics >Fluctuation Spectral Functions and Phase Transitions for Cold Fermi Gases in 2D
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Fluctuation Spectral Functions and Phase Transitions for Cold Fermi Gases in 2D

机译:二维费米气体的波动谱函数和相变

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摘要

We study cold fermions in 2D that are interacting through the s-wave contact potential, using the path-integral formalism. The phase transitions are investigated using the joint solution of the gap and number equations. In the latter ones, the amplitude and phase fluctuations are taken into account within the t-matrix NSR-type formalism. It is shown that convergent solutions for the fermion density in 2D can be obtained even in the lowest-order (quadratic) approximation for fluctuations with a proper determination of the spectral functions. This approach leads, in particular, to a non-coherent quasicondensate which exists between the Berezinskii-Kosterlitz-Thouless (BKT) transition temperature below which the system is superfluid and a transition temperature T_(DELTA) above which the quasicondensate is destroyed.
机译:我们使用路径积分形式,研究通过s波接触电势相互作用的二维冷费米子。使用间隙和数量方程的联合解来研究相变。在后一种情况下,在t矩阵NSR型形式主义中考虑了幅度和相位波动。结果表明,即使在最低阶(二次)近似的波动下,也可以通过适当确定频谱函数来获得2D中费米子密度的收敛解。该方法尤其导致非相干的准冷凝物,其存在于Berezinskii-Kosterlitz-Thouless(BKT)转变温度(低于该温度为系统超流体)和转变温度T_(DELTA)之间,高于该温度时准冷凝物被破坏。

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