首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >General solution to wave propagation in media undergoing arbitrary transient or periodic temporal variations of permittivity
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General solution to wave propagation in media undergoing arbitrary transient or periodic temporal variations of permittivity

机译:在经历任意瞬态或周期性的介电常数的介质中波传播的一般解决方案

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摘要

A novel and general formulation for wave propagation in time-varying media is presented. Unlike previous reports, our formalism is able to solve propagation in media with arbitrary time variations of permittivity or permeability, for both transient and steady-state periodic variations. The formulation is approximate yet strikingly accurate in most practical cases. The provided closed-form expressions show that the normalized average power after the transition of the permittivity does not depend on the details of the transition, while the energy density does. Some important discussions are made about time-periodic media, and it is shown that there is an accumulation of energy when the temporal equivalent of the Bragg condition is met. All results are validated through comparison against analytical or numerical solutions. (c) 2018 Optical Society of America.
机译:介绍了在时变培养基中的波传播的新颖和一般配方。 与以前的报告不同,我们的形式主义能够在介质和稳态周期性变化中使用允许的介电常数或渗透率的任意时间变化来解决介质中的传播。 在大多数实际情况下,配方近似仍然是惊人的准确性。 所提供的闭合表达表明,介电常数过渡后的归一化平均功率不依赖于过渡的细节,而能量密度确实。 关于时间周期性介质进行了一些重要讨论,并且示出了当满足布拉格条件的时间等同物时存在能量的积累。 通过对分析或数值解决方案的比较来验证所有结果。 (c)2018年光学学会。

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