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Chern-Simons Potential in Models of Casimir Effect

机译:Chern-Simons在Casimir效果模型中的潜力

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摘要

In the model constructed in the framework of the proposed by Symanzik approach for description of interaction of a macroscopic material body with quantum fields the interaction of thin material film with photon field is presented by the Chern-Simons potential. All the effects of this interaction with can by described in the framework of one model. In this way, the Casimir energy for two parallel infinite planes and sphere, the Casimir-Polder potential, and characteristics of other physical phenomena have been calculated for non-ideal conducting material of film. The specific of regularization and renormalization procedures used by calculations and the physical meaning of obtained results are discussed. In the limit of infinite coupling constant one obtains the known results of models with boundary conditions. By finite value of coupling constants the model predicts unusual effects which could be important for micro-mechanics, nano-photonics, constructing of new materials.
机译:在由Symanzik方法提出的框架内构造的模型中,用于描述宏观材料体与量子域的相互作用,通过Chern-Simons电位呈现薄材料膜与光子场的相互作用。通过在一个模型的框架中描述了这种相互作用的所有效果。以这种方式,已经计算了两个平行无限平面和球体的卡西米尔能量,用于非理想导电材料的薄膜的非理想导电材料,Casimir-Bolder电位,Casimir-Bolder电位和其他物理现象的特征。讨论了计算使用的正则化和重整化程序以及获得的结果的物理含义。在无限耦合常量的极限中,获得具有边界条件的模型的已知结果。通过耦合常数的有限值,模型预测了对微型机械,纳米光子,造型新材料构建的重要影响。

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