二维斥性费米极化子的有限范围效应

Ra'ul Bomb'in, V. Cikojevi'c, J. S'anchez-Baena, J. Boronat
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引用次数: 3

摘要

受$^{173}$ Yb原子的最新实验结果的启发,我们研究了费米原子的双组分二维系统中的排斥性费米极化子。Darkwah Oppong \textit{等等。},物理学家莱特牧师。\textbf{122}, 193604(2019)]。我们使用扩散蒙特卡罗方法报告了在该实验中测量到的极化子能量和准粒子残留等性质。为了提供对问题的准粒子特征的洞察,我们还报告了有效质量的结果。我们指出,为了重现实验结果,需要有效范围和散射长度。利用费米海与杂质之间相互作用的不同模型势,我们表明,根据这两个参数,有可能建立一个普适状态,包括整个实验状态。这说明了量子涨落和超越平均场效应与正确描述费米极化子问题的相关性。
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Finite-range effects in the two-dimensional repulsive Fermi polaron
We study the repulsive Fermi polaron in a two-component, two-dimensional system of fermionic atoms inspired by the results of a recent experiment with $^{173}$Yb atoms [N. Darkwah Oppong \textit{et al.}, Phys. Rev. Lett. \textbf{122}, 193604 (2019)]. We use the diffusion Monte Carlo method to report properties such as the polaron energy and the quasi-particle residue that have been measured in that experiment. To provide insight on the quasi-particle character of the problem, we also report results for the effective mass. We show that the effective range, together with the scattering length, is needed in order to reproduce the experimental results. Using different model potentials for the interaction between the Fermi sea and the impurity, we show that it is possible to establish a regime of universality, in terms of these two parameters, that includes the whole experimental regime. This illustrates the relevance of quantum fluctuations and beyond mean-field effects to correctly describe the Fermi polaron problem.
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