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Compton Effect in the Medium with Non-unity Refractive Index

机译:非统一折射率介质中的康普顿效应

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The foundations of the modern quantum theory of electro-magnetic radiation and its interaction with medium is constituted by the Einstein's theory of photo-effect and the theory of Compton effect. However, in the theory proposed by Compton and subsequent refinements, the medium features in explicit form are not generally accounted at all. This theory is based on the relationship between the photon momentum and its energy that may take place only in vacuum, but not in a medium with non-unity refractive index n. Here we use Abraham's representation for the momentum of a photon in medium for the creation of a new consistent Compton effect theory accounting for media features. A new condition under which anomalous Compton effect is possible, is defined. In our case, due to the photon scattering on a moving electron, the photon's energy can increase when the electron velocity is above a threshold value, in analogy with the Vavilov-Cherenkov radiation effect. In our theory we also provide a new description of the parameters for scattered electrons, which is important for the experimental determination of the dependence of the Compton effect in medium on refractive index n.
机译:现代电磁辐射量子理论及其与介质相互作用的基础是由爱因斯坦的光效应理论和康普顿效应理论构成的。但是,在康普顿(Compton)提出的理论和随后的改进中,通常根本不考虑显式形式的介质特征。该理论基于光子动量与其能量之间的关系,这种关系可能仅在真空中发生,而不会在具有非统一折射率n的介质中发生。在这里,我们使用亚伯拉罕的表示形式来表示介质中光子的动量,从而创建一个新的一致的康普顿效应理论,说明了介质特征。定义了可能出现异常康普顿效应的新条件。在我们的案例中,由于光子在运动的电子上的散射,当电子速度高于阈值时,类似于Vavilov-Cherenkov辐射效应,光子的能量会增加。在我们的理论中,我们还提供了散射电子参数的新描述,这对于实验确定介质中康普顿效应对折射率n的依赖性很重要。

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