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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Droplet formation in a one-dimensional system of attractive spinless fermions
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Droplet formation in a one-dimensional system of attractive spinless fermions

机译:一维有吸引力的无旋费米子的液滴形成

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A translation invariant one-dimensional system of spinless fermions with a finite-range attraction experiences a quantum phase transition to a phase-separated state. While being a conventional Luttinger liquid for a small interaction strength, spinless fermions form a droplet with the size smaller than the available one-dimensional volume when the interaction strength exceeds some critical value. A particularly remarkable signature of the droplet formation is the change in the lower edge of the many-body excitation spectrum. In the homogeneous phase, it has a Luttinger-liquid shape of periodic arcs on top of the shallow parabolic dispersion of the center of mass. When the interaction strength is increased, the arcs disappear completely as soon as the droplet is formed. We perform an exact diagonalization study of this system with the focus on the signatures of the quantum phase transition and the droplet properties. The one-particle and density-density correlation functions, the pressure, the sound velocity, and the droplet density are examined. The value of the critical interaction strength obtained from numerical data reasonably agrees with a simple mean-field analytical estimate. Due to the boson-fermion correspondence valid in one dimension, our results also hold for hard-core bosons with a finite-range attraction.
机译:具有有限范围引力的无旋转费米子的平移不变一维系统经历量子相变到相分离状态。虽然是用于小相互作用强度的常规Luttinger液体,但当相互作用强度超过某个临界值时,无旋费米子形成的液滴尺寸小于可用的一维体积。液滴形成的一个特别显着的特征是多体激发光谱下边缘的变化。在均匀相中,它在质心的浅抛物线色散顶部具有周期性弧形的Luttinger液体形状。当增加相互作用强度时,一旦形成液滴,电弧就完全消失。我们对这个系统进行精确的对角化研究,重点是量子相变和液滴性质的特征。检查单粒子和密度-密度相关函数,压力,声速和液滴密度。从数值数据获得的临界相互作用强度的值与简单的平均场分析估计值合理地吻合。由于玻色子-费米子对应关系在一个维度上有效,因此我们的结果也适用于具有有限范围引力的硬核玻色子。

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