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Generalized quasi mode theory of macroscopic canonical quantization in cavity quantum electrodynamics and quantum optics II. Application to reflection and refraction at a dielectric interface

机译:腔量子电动力学和量子光学中宏观典范量子化的广义准模式理论II。应用于介电界面的反射和折射

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The generalization of the quasi mode theory of macroscopic quantization in quantum optics and cavity QED presented in the previous paper, is applied to provide a fully quantum theoretic derivation of the laws of reflection and refraction at a boundary. The quasi mode picture of this process involves the annihilation of a photon travelling in the incident region quasi mode, and the subsequent creation of a photon in either the incident region or transmitted region quasi modes. The derivation of the laws of reflection and refraction is achieved through the dual application of the quasi mode theory and a quantum scattering theory based on the Heisenberg picture. Formal expressions from scattering theory are given for the reflection and transmission coefficients. The behaviour of the intensity for a localized one photon wave packet coming in at time minus infinity from the incident direction is examined and it is shown that at time plus infinity, the light intensity is only significant where the classical laws of reflection and refraction predict. The occurrence of both refraction and reflection is dependent upon the quasi mode theory coupling constants between incident and transmitted region quasi modes being non-zero, and it is seen that the contributions to such coupling constants come from the overlap of the mode functions in the boundary layer region, as might be expected from a microscopic theory.
机译:先前论文中提出的量子光学和腔QED中的宏观量子化准模式理论的推广,用于提供边界反射和折射定律的全量子理论推导。此过程的准模式图片涉及以入射区域准模式传播的光子的an灭,以及随后在入射区域或透射区域准模式下创建光子的过程。反射和折射定律的推导是通过准模式理论和基于海森堡图像的量子散射理论的双重应用而实现的。根据散射理论给出了反射系数和透射系数的形式表达式。检查了一个局部光子波包的强度在时间上从入射方向减去无穷大时的行为,结果表明,在时间加无穷大时,光强度仅在经典的反射和折射定律预测时才有意义。折射和反射的出现均取决于入射和透射区域准模之间的准模理论耦合常数为非零,并且可以看出,对这些耦合常数的贡献来自边界中模函数的重叠。如微观理论所预期的那样,层区域。

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