论文标题

部分可观测时空混沌系统的无模型预测

Collective excitations of a charged Fermi superfluid in the BCS-BEC crossover

论文作者

Klimin, S. N., Tempere, J., Repplinger, T., Kurkjian, H.

论文摘要

我们考虑在费米浓缩充电气体的超流体状态下的集体激发。检查了集体激发在非零温度下的分散和阻尼,并考虑了集体激发的不同分支的共存和相互作用:等离子体振荡,配对的HIGGS模式以及卡尔森 - 基德曼 - 基德曼语音子类似励磁的激励。超流体费米气体和库仑气体的路径积分方法合并为统一的形式主义,该形式延伸了高斯波动近似,以说明等离子模式。高斯对和密度波动的这种近似能够描述带电超流体中存在的所有集体激发的分支。集体激发的光谱通过两种方式确定:从光谱函数和波动传播器的复杂极点确定。显示了避免不同模式的谐振交叉。由于它们与等离子体振荡的相互作用,因此伴随着对破坏模式提供的响应的共振增强。这可能有助于对破坏成对模式的实验观察。

We consider collective excitations in the superfluid state of Fermi condensed charged gases. The dispersion and damping of collective excitations at nonzero temperatures are examined, and the coexistence and interaction of different branches of collective excitations: plasma oscillations, pair-breaking Higgs modes, and Carlson-Goldman phonon-like excitations are taken into account. The path integral methods for superfluid Fermi gases and for Coulomb gas are combined into a unified formalism that extends the Gaussian fluctuation approximation to account for plasmonic modes. This approximation of Gaussian pair and density fluctuations is able to describe all branches of collective excitations existing in a charged superfluid. The spectra of collective excitations are determined in two ways: from the spectral functions and from the complex poles of the fluctuation propagator. A resonant avoided crossing of different modes is shown. It is accompanied by resonant enhancement of the response provided by the pair-breaking modes due to their interaction with plasma oscillations. This may facilitate the experimental observation of the pair-breaking modes.

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