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Dimensional crossover and dimensional effects in quasi-two-dimensional Bose gases (Review)

机译:准二维玻色气体中的尺寸交叉和尺寸效应(综述)

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This paper gives a systematic review on studies of dimensional effects in pure- and quasi-two-dimensional (2D) Bose gases, focusing on the role of dimensionality in the fundamental relation among the universal behavior of breathing mode, scale invariance and dynamic symmetry. First, we illustrate the emergence of universal breathing mode in the case of pure 2D Bose gases, and elaborate on its connection with the scale invariance of the Hamiltonian and the hidden SO(2, 1) symmetry. Next, we proceed to quasi-2D Bose gases, where excitations are frozen in one direction and the scattering behavior exhibits a 3D to 2D crossover. We show that the original SO(2, 1) symmetry is broken by arbitrarily small 2D effects in scattering, which consequently shifts the breathing mode from the universal frequency. The predicted shift rises significantly from the order of 0.5% to more than 5% in transiting from the 3D-scattering to the 2D-scattering regime. Observing this dimensional effect directly would present an important step in revealing the interplay between dimensionality and quantum fluctuations in quasi-2D.
机译:本文对纯二维和准二维(2D)Bose气体中的尺寸效应研究进行了系统的综述,重点研究了尺寸在呼吸模式的通用行为,尺度不变性和动态对称性之间的基本关系中的作用。首先,我们说明了在纯二维Bose气体情况下通用呼吸模式的出现,并详细阐述了其与哈密顿量的尺度不变性和隐藏的SO(2,1)对称性的关系。接下来,我们进行准2D玻色气体,其中激发沿一个方向冻结,并且散射行为表现出3D到2D的交叉。我们表明原始的SO(2,1)对称性被任意小的2D散射效应打破,因此将呼吸模式从通用频率上移开了。在从3D散射到2D散射的过渡过程中,预测的偏移从0.5%显着提高到5%以上。直接观察该尺寸效应将在揭示准2D尺寸和量子涨落之间的相互作用方面迈出重要的一步。

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