Nonuniversal Equation of State of a Quasi-2D Bose Gas in Dimensional Crossover

Fuente: arXiv
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Main Authors: Ye, Xiaoran, Yu, Tao, Liang, Zhaoxin
Format: Preprint
Published: 2024
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author Ye, Xiaoran
Yu, Tao
Liang, Zhaoxin
author_facet Ye, Xiaoran
Yu, Tao
Liang, Zhaoxin
contents Equation of state (EOS) for a pure two-dimensional (2D) Bose gas exhibits a logarithmic dependence on the s-wave scattering length [L. Salasnich, Phys. Rev. Lett. 118, 130402 (2017)]. The pronounced disparity between the EOS of a 2D Bose gas and its 3D counterpart underscores the significance of exploring the dimensional crossover between these two distinct dimensions. In this work, we are motivated to deduce nonuniversal corrections to EOS for an optically trapped Bose gas along the dimensional crossover from 3D to 2D, incorporating the finite-range effects of the interatomic potential. Employing the framework of effective field theory, we derive the analytical expressions for both the ground state energy and quantum depletion. The introduction of the lattice induces a transition from a 3D to a quasi-2D regime. In particular, we systematically analyze the asymptotic behaviors of both the 2D and 3D aspects of the model system, with a specific focus on the nonuniversal effects on the EOS arising from finite-range interactions. The nonuniversal effects proposed in this study along the dimensional crossover represent a significant stride toward unraveling the intricate interplay between dimensionality and quantum fluctuations.
format Preprint
id arxiv_https___arxiv_org_abs_2402_04703
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Nonuniversal Equation of State of a Quasi-2D Bose Gas in Dimensional Crossover
Ye, Xiaoran
Yu, Tao
Liang, Zhaoxin
Quantum Gases
Equation of state (EOS) for a pure two-dimensional (2D) Bose gas exhibits a logarithmic dependence on the s-wave scattering length [L. Salasnich, Phys. Rev. Lett. 118, 130402 (2017)]. The pronounced disparity between the EOS of a 2D Bose gas and its 3D counterpart underscores the significance of exploring the dimensional crossover between these two distinct dimensions. In this work, we are motivated to deduce nonuniversal corrections to EOS for an optically trapped Bose gas along the dimensional crossover from 3D to 2D, incorporating the finite-range effects of the interatomic potential. Employing the framework of effective field theory, we derive the analytical expressions for both the ground state energy and quantum depletion. The introduction of the lattice induces a transition from a 3D to a quasi-2D regime. In particular, we systematically analyze the asymptotic behaviors of both the 2D and 3D aspects of the model system, with a specific focus on the nonuniversal effects on the EOS arising from finite-range interactions. The nonuniversal effects proposed in this study along the dimensional crossover represent a significant stride toward unraveling the intricate interplay between dimensionality and quantum fluctuations.
title Nonuniversal Equation of State of a Quasi-2D Bose Gas in Dimensional Crossover
topic Quantum Gases
url https://arxiv.org/abs/2402.04703