论文标题
量子蒙特卡洛研究P波相互作用在超低排斥性费米气体中的作用
Quantum Monte Carlo study of the role of p-wave interactions in ultracold repulsive Fermi gases
论文作者
论文摘要
通常使用非相互作用的多屈光度模型来描述单一组分超低原子费米气体。但是,最近的实验达到了一个$ p $ p $波的相互作用之间相同的费米原子的相互作用的政权。在本文中,我们采用变异和固定节点扩散蒙特卡洛模拟来研究具有短距离排斥相互作用的单组分费米气体的地面特性。我们确定了状态的零温度方程,并阐明了$ p $ - 波散射量和$ p $ - 波的有效范围。与最近衍生的二阶扰动结果的比较表明,在广泛的相互作用强度中的良好一致性。我们还计算了准粒子有效质量,并确认了$ p $ - 波散射量的线性贡献的扰动预测,而我们发现与中等势相互作用强度已经存在显着的偏差。最后,我们确定具有种间和种内硬球相互作用的两种组分非极化费米气体的地面能量,与最近派生的四阶扩展相同的一致性,包括$ p $ - 波贡献。
Single-component ultracold atomic Fermi gases are usually described using noninteracting many-fermion models. However, recent experiments reached a regime where $p$-wave interactions among identical fermionic atoms are important. In this paper, we employ variational and fixed-node diffusion Monte Carlo simulations to investigate the ground-state properties of single-component Fermi gases with short-range repulsive interactions. We determine the zero-temperature equation of state, and elucidate the roles played by the $p$-wave scattering volume and the $p$-wave effective range. A comparison against recently derived second-order perturbative results shows good agreement in a broad range of interaction strength. We also compute the quasiparticle effective mass, and we confirm the perturbative prediction of a linear contribution in the $p$-wave scattering volume, while we find significant deviations from the beyond-mean-field perturbative result, already for moderate interaction strengths. Finally, we determine ground-state energies for two-component unpolarized Fermi gases with both interspecies and intraspecies hard-sphere interactions, finding remarkable agreement with a recently derived fourth-order expansion that includes $p$-wave contributions.