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范德华相互作用:利用统计力学方法进行评估。

Van der Waals interactions: evaluations by use of a statistical mechanical method.

机构信息

Department of Physics, Norwegian University of Science and Technology, N-7491 Trondheim, Norway.

出版信息

J Chem Phys. 2011 Oct 7;135(13):134102. doi: 10.1063/1.3643339.

DOI:10.1063/1.3643339
PMID:21992277
Abstract

In this work the induced van der Waals interaction between a pair of neutral atoms or molecules is considered by use of a statistical mechanical method. With use of the Schrödinger equation this interaction can be obtained by standard quantum mechanical perturbation theory to second order. However, the latter is restricted to electrostatic interactions between dipole moments. So with radiating dipole-dipole interaction where retardation effects are important for large separations of the particles, other methods are needed, and the resulting induced interaction is the Casimir-Polder interaction usually obtained by field theory. It can also be evaluated, however, by a statistical mechanical method that utilizes the path integral representation. We here show explicitly by use of this method the equivalence of the Casimir-Polder interaction and the van der Waals interaction based upon the Schrödinger equation. The equivalence is to leading order for short separations where retardation effects can be neglected. In recent works [J. S. Høye, Physica A 389, 1380 (2010); Phys. Rev. E 81, 061114 (2010)], the Casimir-Polder or Casimir energy was added as a correction to calculations of systems like the electron clouds of molecules. The equivalence to van der Waals interactions indicates that the added Casimir energy will improve the accuracy of calculated molecular energies. Thus, we give numerical estimates of this energy including analysis and estimates for the uniform electron gas.

摘要

在这项工作中,通过统计力学方法考虑了一对中性原子或分子之间的诱导范德瓦尔斯相互作用。通过薛定谔方程,这种相互作用可以通过标准量子力学微扰理论得到二阶。然而,后者仅限于偶极矩之间的静电相互作用。因此,对于粒子的大分离,对于辐射偶极子-偶极子相互作用,其中延迟效应很重要,需要其他方法,并且得到的诱导相互作用通常是由场论得到的 Casimir-Polder 相互作用。然而,它也可以通过利用路径积分表示的统计力学方法来评估。我们在这里通过使用该方法,明确地展示了 Casimir-Polder 相互作用和基于薛定谔方程的范德瓦尔斯相互作用之间的等效性。在可以忽略延迟效应的短距离处,等效性是主要的。在最近的工作中[J. S. Høye, Physica A 389, 1380 (2010); Phys. Rev. E 81, 061114 (2010)],将 Casimir-Polder 或 Casimir 能量作为对分子电子云等系统的计算的修正添加。与范德瓦尔斯相互作用的等效性表明,添加的 Casimir 能量将提高计算分子能量的准确性。因此,我们给出了包括对均匀电子气体的分析和估计的这种能量的数值估计。

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