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首页> 外文期刊>New journal of physics >Dynamic structure factor of a strongly correlated Fermi superfluid within a density functional theory approach
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Dynamic structure factor of a strongly correlated Fermi superfluid within a density functional theory approach

机译:密度泛函理论方法中强相关费米超流体的动态结构因子

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摘要

We theoretically investigate the dynamic structure factor of a strongly interacting Fermi gas at the crossover from Bardeen–Cooper–Schrieffer superfluids to Bose–Einstein condensates, by developing an improved random phase approximation within the framework of a density functional theory (DFT)—the so-called superfluid local density approximation. Compared with the previous random-phase-approximation studies based on the standard Bogoliubov–de Gennes equations, the use of the DFT greatly improves the accuracy of the equation of state at the crossover, and leads to a better description of both collective Bogoliubov-Anderson-Goldstone phonon mode and single-particle fermionic excitations at small transferred momentum. Near unitarity, where the s-wave scattering length diverges, we show that the single-particle excitations start to significantly contribute to the spectrum of dynamic structure factor once the frequency is above a threshold of the energy gap at . The sharp rise in the spectrum at this threshold can be utilized to measure the pairing gap Δ. Together with the sound velocity determined from the phonon branch, the dynamic structure factor provides us some key information of the crossover Fermi superfluid. Our predictions could be examined in experiments with 6Li or 40K atoms using Bragg spectroscopy.
机译:通过在密度泛函理论(DFT)的框架内开发一种改进的随机相近似,我们从理论上研究了强相互作用的费米气体在从Bardeen-Cooper-Schrieffer超流体到Bose-Einstein冷凝物的交汇处的动力学结构因子,因此所谓的超流体局部密度近似。与以前的基于标准Bogoliubov-de Gennes方程的随机相位近似研究相比,DFT的使用极大地提高了交叉时状态方程的准确性,并导致对Bogoliubov-Anderson集合的更好描述-金石声子模式和单粒子铁电激发态,传递动量较小。接近单一性,即s波的散射长度发散,我们表明,一旦频率高于处的能隙阈值,单粒子激发就开始对动态结构因子谱做出重大贡献。在该阈值处光谱的急剧上升可用于测量配对间隙Δ。连同从声子分支确定的声速,动态结构因子为我们提供了有关费米超流体交叉的一些关键信息。我们的预测可以通过布拉格光谱法在6Li或40K原子的实验中进行检验。

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