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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Temporal coherence, anomalous moments, and pairing correlations in the classical-field description of a degenerate Bose gas
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Temporal coherence, anomalous moments, and pairing correlations in the classical-field description of a degenerate Bose gas

机译:简并玻色气体经典场描述中的时间相干性,异常矩和配对相关性

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摘要

The coherence properties of degenerate Bose gases have usually been expressed in terms of spatial correlation functions, neglecting the rich information encoded in their temporal behavior. In this article we show, using a Hamiltonian classical-field formalism, that temporal correlations can be used to characterize familiar properties of a finite-temperature degenerate Bose gas. The temporal coherence of a Bose-Einstein condensate is limited only by the slow diffusion of its phase, and thus the presence of a condensate is indicated by a sharp feature in the temporal power spectrum of the field. We show that the condensate mode can be obtained by averaging the field for a short time in an appropriate phase-rotating frame, and that for a wide range of temperatures, the condensate obtained in this approach agrees well with that defined by the Penrose-Onsager criterion based on one-body (spatial) correlations. For time periods long compared to the phase diffusion time, the field will average to zero,as we would expect from the overall U(1) symmetry of the Hamiltonian. We identify the emergence of the first moment on short time scales with the concept of U(1) symmetry breaking that is central to traditional mean-field theories of Bose condensation. We demonstrate that the short-time averaging procedure constitutes a general analog of the "anomalous" averaging operation of symmetry-broken theories by calculating the anomalous thermal density of the field, which we find to have form and temperature dependence consistent with the results of mean-field theories.
机译:简并的玻色气体的相干特性通常用空间相关函数表示,而忽略了其时间行为中编码的丰富信息。在本文中,我们使用哈密顿经典场形式主义表明,时间相关性可用于表征有限温度简并的Bose气体的熟悉特性。玻色-爱因斯坦凝聚物的时间相干性仅受其相的缓慢扩散限制,因此,冷凝物的存在由场的时间功率谱中的尖锐特征指示。我们表明,凝结模式可以通过在适当的相位旋转帧中对短时场进行平均来获得,并且对于较大的温度范围,以这种方式获得的凝结与Penrose-Onsager定义的相吻合。基于单身(空间)相关性的标准。对于与相扩散时间相比较长的时间段,该场将平均为零,正如我们从哈密顿量的整体U(1)对称性所期望的那样。我们用U(1)对称破坏的概念来识别短时尺度上第一时刻的出现,这是传统玻色凝聚平均均场理论的核心。通过计算场的异常热密度,我们证明了短时平均过程构成对称破坏理论的“异常”平均操作的一般模拟,我们发现其场形和温度依赖性与均值结果一致场理论。

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