轨道费什巴赫共振附近强相互作用费米超流体从BCS到Sarma超流体相变的动态结构因子

P. Zou, Huaisong Zhao, Lianyi He, Xiaji Liu, Hui Hu
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引用次数: 4

摘要

利用随机相位近似从理论上研究了轨道费什巴赫共振附近强相互作用费米超流体的动力学结构因素,并通过连续改变两个自旋分量的化学位差,找到了它们在平衡常规bardeen - coopero - schrieffer超流体和极化Sarma超流体相变过程中的动力学特征。在类bec的BCS超流体中,动态结构因子可以通过分子激发和莱格特模式的相对位置,或破坏库珀对的最小能量,来帮助区分相内基态和相外亚稳态。在BCS和Sarma超流体的相变过程中,我们发现Sarma超流体的动力结构因子在小转移动量下有其特定的与集体声子混合的无间隙激励,同时由于未对费米原子的存在,在大转移动量下也有较强的原子激励,这些信号可以用来区分Sarma超流体和BCS超流体。
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Dynamic structure factors of a strongly interacting Fermi superfluid near an orbital Feshbach resonance across the phase transition from BCS to Sarma superfluid
We theoretically investigate dynamic structure factors of a strongly interacting Fermi superfluid near an orbital Feshbach resonance with random phase approximation, and find their dynamical characters during the phase transition between a balanced conventional Bardeen-Cooper-Schrieffer superfluid and a polarized Sarma superfluid by continuously varying the chemical potential difference of two spin components. In a BEC-like regime of the BCS superfluid, dynamic structure factors can do help to distinguish the in-phase ground state from the out-of-phase metastable state by the relative location of molecular excitation and Leggett mode, or the minimum energy to break a Cooper pair. In the phase transition between BCS and Sarma superfluid, we find the dynamic structure factor of Sarma superfluid has its own specific gapless excitation at a small transferred momentum which is mixed with the collective phonon excitation, and also a relatively strong atomic excitation at a large transferred momentum because of the existence of unpaired Fermi atoms, these signals can be used to differentiate Sarma superfluid from BCS superfluid.
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