Fermions in Two Dimensions: Scattering and Many-Body Properties

被引:0
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作者
Alexander Galea
Tash Zielinski
Stefano Gandolfi
Alexandros Gezerlis
机构
[1] University of Guelph,Department of Physics
[2] Los Alamos National Laboratory,Theoretical Division
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关键词
Cold atoms; Fermions; Two-dimensional systems; Scattering; Quantum Monte Carlo;
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摘要
Ultracold atomic Fermi gases in two dimensions (2D) are an increasingly popular topic of research. The interaction strength between spin-up and spin-down particles in two-component Fermi gases can be tuned in experiments, allowing for a strongly interacting regime where the gas properties are yet to be fully understood. We have probed this regime for 2D Fermi gases by performing T = 0 ab initio diffusion Monte Carlo calculations. The many-body dynamics are largely dependent on the two-body interactions; therefore, we start with an in-depth look at scattering theory in 2D. We show the partial-wave expansion and its relation to the scattering length and effective range. Then, we discuss our numerical methods for determining these scattering parameters. We close out this discussion by illustrating the details of bound states in 2D. Transitioning to the many-body system, we use variationally optimized wave functions to calculate ground-state properties of the gas over a range of interaction strengths. We show results for the energy per particle and parametrize an equation of state. We then proceed to determine the chemical potential for the strongly interacting gas.
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页码:451 / 469
页数:18
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