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Propagation of quantized fields through negative-index media

机译:通过负折射率介质传播量化场

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Dielectric materials in which both the relative permittivity,ε and the relative permeability,μ are negative exhibit striking optical properties, which are a consequence of the fact that the effective index of refraction in such materials is negative. Most studies of the propagation of electromagnetic fields in these media have concentrated on classical fields with well-defined phases. In contrast, I use simple fully-quantized models to illustrate how some of the striking properties of negative-index media are manifested in the propagation of single, spontaneously emitted, photons. Single-photon quantum fields do not have an absolute phase, but the examples in this paper demonstrate a quantum analog of the negative phase accumulated by classical fields as photons propagate through negative-index media. The single photons also exhibit classical reflection and transmission coefficients, as well as the expected group velocity.
机译:相对介电常数ε和相对磁导率μ均为负的介电材料具有惊人的光学性能,这是由于这样的材料的有效折射率为负的事实的结果。在这些介质中传播电磁场的大多数研究都集中在相位明确的经典场上。相比之下,我使用简单的全量化模型来说明负折射率介质的某些惊人特性如何在单个自发发射的光子的传播中体现出来。单光子量子场没有绝对相位,但是本文中的示例演示了经典场在光子通过负折射率介质传播时所累积的负相的量子模拟。单光子还表现出经典的反射和透射系数,以及预期的群速度。

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