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Born expansion of the Casimir-Polder interaction of a ground-state atom with dielectric bodies

机译:基态原子与介电体的Casimir-Polder相互作用的Born展开

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摘要

Within leading-order perturbation theory, the Casimir-Polder potential of a ground-state atom placed within an arbitrary arrangement of dispersing and absorbing linear bodies can be expressed in terms of the polarizability of the atom and the scattering Green tensor of the body-assisted electromagnetic field. Based on a Born series of the Green tensor, a systematic expansion of the Casimir-Polder potential in powers of the susceptibilities of the bodies is presented. The Born expansion is used to show how and under which conditions the Casimir-Polder force can be related to microscopic many-atom van der Waals forces, for which general expressions are presented. As an application, the Casimir-Polder potentials of an atom near a dielectric ring and an inhomogeneous dielectric half space are studied and explicit expressions are presented that are valid up to second order in the susceptibility.
机译:在前导摄动理论中,位于基态原子的任意分散和吸收线状体中的基态原子的卡西米尔-波德势可以用原子的极化率和辅助体的散射格林张量表示。电磁场。基于绿色张量的伯恩级数,提出了卡西米尔-波德势在人体磁化强度中的系统扩展。 Born展开用于显示Casimir-Polder力如何以及在何种条件下与微观多原子范德华力相关,为此提供了一般表达式。作为一种应用,研究了介电环附近原子和不均匀介电半空间的Casimir-Polder势,并给出了对磁化率有效至二阶的明确表达式。

著录项

  • 作者

    Buhmann, S Y; Welsch, D G;

  • 作者单位
  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 eng
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