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Effective theory for the Goldstone field in the BCS-BEC crossover at T=0

机译:T = 0时BCS-BEC交叉中金石场的有效理论

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We perform a detailed study of the effective Lagrangian for the Goldstone mode of a superfluid Fermi gas at zero temperature in the whole BCS-BEC crossover. By using a derivative expansion of the response functions, we derive the most general form of this Lagrangian at the next to leading order in the momentum expansion in terms of four coefficient functions. This involves the elimination of all the higher order time derivatives by careful use of the leading order field equations. In the infinite scattering length limit where conformal invariance is realized, we show that the effective Lagrangian must contain an unnoticed invariant combination of higher spatial gradients of the Goldstone mode, while explicit couplings to spatial gradients of the trapping potential are absent. Across the whole crossover, we determine all the coefficient functions at the one-loop level, taking into account the dependence of the gap parameter on the chemical potential in the mean-field approximation. These results are analytically expressed in terms of elliptic integrals of the first and second kind. We discuss the form of these coefficients in the extreme BCS and BEC regimes and around the unitary limit, and compare with recent work by other authors.
机译:我们对整个BCS-BEC交叉中零温度下超流体费米气体的Goldstone模式的有效Lagrangian进行了详细研究。通过使用响应函数的导数展开,我们可以得出在四个系数函数方面动量展开中最接近领先顺序的拉格朗日最一般形式。这涉及通过谨慎使用前导场方程来消除所有高阶时间导数。在实现保形不变的无限散射长度极限中,我们表明有效的拉格朗日法必须包含戈德斯通模式的较高空间梯度的未被注意到的不变组合,而缺少与势阱空间梯度的显式耦合。在整个分频器中,考虑平均参数近似中间隙参数对化学势的依赖性,我们确定了一环水平的所有系数函数。这些结果用第一类和第二类椭圆积分解析表示。我们讨论了在极端BCS和BEC机制中以及在统一极限附近的这些系数的形式,并与其他作者最近的工作进行了比较。

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