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首页> 外文期刊>Physical Review, A >Highly polarized one-dimensional Fermi gases near a narrow p-wave resonance
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Highly polarized one-dimensional Fermi gases near a narrow p-wave resonance

机译:高偏振的一维Fermi气体附近窄的P波共振

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Based on the recently developed interaction renormalization for the one-dimensional p-wave interaction, we study the problem of a single impurity immersed in a highly polarized Fermi sea. They interact through a narrow p-wave Feshbach resonance, so the effective range r_0 naturally appears in the system. We use the variational approach limited to single-particle-hole excitations on top of the unperturbed Fermi sea. The polaron exhibits two branches of solutions, namely, the attractive and repulsive branches, with varying scattering length across the resonance. We calculate the energy spectrum, residue, and effective mass for each of the branches. We compare the polaronic energy with the energy of the dressed molecule and find that the molecular state is energetically favored when increasing the interaction strength. The critical interaction strength for the polaron-to-molecule transition will shift to the BCS side of the p-wave resonance as the effective range increases.
机译:基于最近开发的相互作用重整化对一维P波相互作用,我们研究了浸入高极化的费米海中的单一杂质的问题。 它们通过窄的P波Feshach谐振进行交互,因此有效范围R_0自然地出现在系统中。 我们使用分析方法限制在未受干扰的费米海之上的单粒子孔激励。 极化子表现出两个溶液分支,即具有吸引力和排斥的分支,具有不同的散射长度在谐振。 我们计算每个树枝的能谱,残留物和有效质量。 我们将极性能量与衣服分子的能量进行比较,发现当增加相互作用强度时,分子状态能够充满活力。 随着有效范围的增加,焦化到分子转变的临界相互作用强度将移位到P波谐振的BCS侧。

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