双阱势中 BEC 动力学的均方外场效应

IF 1.5 4区 物理与天体物理 Q3 OPTICS The European Physical Journal D Pub Date : 2024-09-20 DOI:10.1140/epjd/s10053-024-00909-4
Fatkhulla Kh. Abdullaev, Ravil M. Galimzyanov, Akbar M. Shermakhmatov
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摘要

研究了加载在双阱势中的准一维 BEC 的非线性动力学。以李-黄-杨项的形式对能量进行了超均值场修正。考虑了一维几何。在标量近似中,问题由扩展的格罗斯-皮塔耶夫斯基(EGP)方程描述,该方程具有吸引力二次非线性(由于李-黄-杨修正)和有效的立方均场非线性,描述了残余的种内和种间相互作用。为了描述隧穿和局域化现象,我们得到了一个双模模型。通过对 EGP 方程的全数值模拟,找到并确认了约瑟夫森振荡的频率。研究了当阻挡层高度被周期性调制时,约瑟夫森振荡中的参数共振。二聚体模型的预测,包括一维李-黄-杨超流体的情况,都得到了证明。
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Beyond-mean-field effects in dynamics of BEC in the double-well potential

The nonlinear dynamics of a quasi-1D BEC loaded in a double-well potential is studied. The beyond-mean-field corrections to the energy in the form of the Lee–Huang–Yang term are taken into account. One-dimensional geometry is considered. The problem is described in the scalar approximation by the extended Gross–Pitaevskii (EGP) equation with the attractive quadratic nonlinearity, due to the Lee–Huang–Yang correction, and the effective cubic mean-field nonlinearity describing the residual intra- and inter-species interactions. To describe tunneling and localization phenomena, a two-mode model was obtained. The frequencies of the Josephson oscillations are found and confirmed by the full numerical simulations of the EGP equation. The parametric resonance in the Josephson oscillations, when the height of the barrier is periodically modulated, is studied. The predictions of the dimer model, including the case of the one-dimensional Lee–Huang–Yang superfluid, have been proven.

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来源期刊
The European Physical Journal D
The European Physical Journal D 物理-物理:原子、分子和化学物理
CiteScore
3.10
自引率
11.10%
发文量
213
审稿时长
3 months
期刊介绍: The European Physical Journal D (EPJ D) presents new and original research results in: Atomic Physics; Molecular Physics and Chemical Physics; Atomic and Molecular Collisions; Clusters and Nanostructures; Plasma Physics; Laser Cooling and Quantum Gas; Nonlinear Dynamics; Optical Physics; Quantum Optics and Quantum Information; Ultraintense and Ultrashort Laser Fields. The range of topics covered in these areas is extensive, from Molecular Interaction and Reactivity to Spectroscopy and Thermodynamics of Clusters, from Atomic Optics to Bose-Einstein Condensation to Femtochemistry.
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