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N identical particles under quantum confinement: a many-body dimensional perturbation theory approach

机译:量子约束下的N个相同粒子:多体尺寸摄动理论方法

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Systems that involve N identical interacting particles under quantum confinement appear throughout many areas of physics, including chemical, condensed matter, and atomic physics. In this paper, we present the methods of dimensional perturbation theory, a powerful set of tools that uses symmetry to yield simple results for studying such many-body systems. We present a detailed discussion of the dimensional continuation of the N-particle Schrodinger equation, the spatial dimension D --> infinity equilibrium (D-0) structure, and the normal-mode (D-1) structure. We use the FG matrix method to derive general, analytical expressions for the many-body normal-mode vibrational frequencies, and we give specific analytical results for three confined N-body quantum systems: the N-electron atom, N-electron quantum dot, and N-atom inhomogeneous Bose-Einstein condensate with a repulsive hard-core potential. (C) 2003 Elsevier Inc. All rights reserved. [References: 19]
机译:在量子约束下涉及N个相同相互作用粒子的系统出现在物理学的许多领域,包括化学,凝聚态和原子物理学。在本文中,我们介绍了尺寸微扰理论的方法,这是一组强大的工具,它们使用对称性来产生简单的结果,以研究这种多体系统。我们将详细讨论N粒子Schrodinger方程的维数连续,空间维D->无限平衡(D-0)结构和法向模(D-1)结构。我们使用FG矩阵方法来推导多体正常模式振动频率的一般解析表达式,并给出三个受限N体量子系统的特定分析结果:N电子原子,N电子量子点, N原子不均匀的Bose-Einstein凝聚物,具有排斥性的核势。 (C)2003 Elsevier Inc.保留所有权利。 [参考:19]

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