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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Proper treatment of the zero mode in quantum field theory for trapped Bose-Einstein condensation - art. no. 013609
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Proper treatment of the zero mode in quantum field theory for trapped Bose-Einstein condensation - art. no. 013609

机译:量子场论中零模的正确处理,用于俘获的玻色-爱因斯坦凝聚-艺术。没有。 013609

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摘要

So far much theoretical consideration of experiments on the Bose-Einstein condensation (BEC) of alkali-metal atoms in harmonic traps is based on the Gross-Pitaevskii (GP) equation. In this paper, we attempt to formulate the BEC in the language of quantum field theory and to estimate the quantum and thermal fluctuation effects, which are neglected in the approximation using the GP equation. First, the formulation at zero temperature is developed, and then it is extended to the finite-temperature case by means of thermofield dynamics. We treat the zero-energy mode with care, so that the canonical commutation relations hold. As a result, an infrared divergence appears, but it can be renormalized into the observed condensate number. Numerical calculations are performed. For illustration, the corrections at one-loop level to the original GP equation are given. We also calculate numerically the effects of quantum and thermal fluctuations on the distribution of condensed atoms. [References: 32]
机译:到目前为止,关于谐波陷阱中碱金属原子的玻色-爱因斯坦缩合(BEC)实验的理论考虑都是基于Gross-Pitaevskii(GP)方程。在本文中,我们尝试用量子场论的语言来公式化BEC并估算量子和热涨落效应,而在使用GP方程近似时忽略了这一点。首先,开发零温度下的配方,然后通过热场动力学将其扩展到有限温度的情况。我们谨慎对待零能量模式,以便保持规范的换向关系。结果,出现了红外发散,但可以将其重新归一化为观察到的冷凝物数。进行数值计算。为了说明起见,给出了对原始GP方程的单循环校正。我们还通过数值计算量子和热涨落对凝聚原子分布的影响。 [参考:32]

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