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Role of magnetic and diamagnetic interactions in molecular optics and scattering

机译:磁性和抗磁相互作用在分子光学和散射中的作用

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This paper aims to explicitly clarify the role and interpretation of diamagnetic interactions between molecules and light in quantum electrodynamics. In contrast to their electric and magnetic counterparts, the diamagnetic couplings between light and matter have received relatively little interest in the field of molecular optics. This intriguing disregard of an interaction term is puzzling. The diamagnetic couplings possess unique physical properties that warrant their inclusion in any multiphoton process, and the lack of gauge invariance for paramagnetic and diamagnetic susceptibilities necessitates their inclusion. Their role and importance within nonrelativistic molecular quantum electrodynamics in the Coulomb gauge is illuminated, and it is highlighted how for any multiphoton process their inclusion should be implicit. As an indicative example of the theory presented, the diamagnetic contributions to both forward and nonforward Rayleigh scattering are derived and put into context alongside the electric and magnetic molecular responses. The work represents clarification of diamagnetic couplings in molecular quantum electrodynamics, which subsequently should proffer the study of diamagnetic interactions in molecular optics due to their unique physical attributes and necessary inclusion in multiphoton processes.
机译:本文旨在明确阐明量子电动力学中分子与光之间的作用和解释。与它们的电和磁性对应物相比,光和物质之间的抗磁联接器在分子光学领域接收了相对较小的兴趣。这种有趣的忽视相互作用项是令人费解的。抗磁联轴器具有独特的物理性质,保证其包含在任何多回光过程中的含义,并且对顺磁性和抗磁敏感性的缺乏仪表不变性需要它们包含它们的含量。它们在库仑计中的非椭圆形分子量子电动力学中的作用和重要性被照亮,并且突出显示了它们的夹杂物应该是隐含的。作为所呈现的理论的指示示例,衍生出向前和非向前射灯散射的抗磁贡献并将其沿着电和磁性分子反应脱离。该工作代表了分子量子电动力学中的抗磁联轴器的澄清,随后应赋予分子光学中的抗磁相互作用的研究,因为它们独特的物理属性以及在多光处理过程中必要的夹杂物。

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