Biancalana Fabio, Amann Andreas, Uskov Alexander V, O'Reilly Eoin P
Tyndall National Institute, Lee Maltings, Cork, Ireland.
Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Apr;75(4 Pt 2):046607. doi: 10.1103/PhysRevE.75.046607. Epub 2007 Apr 20.
Propagation, transmission and reflection properties of linearly polarized plane waves and arbitrarily short electromagnetic pulses in one-dimensional dispersionless dielectric media possessing an arbitrary space-time dependence of the refractive index are studied by using a two-component, highly symmetric version of Maxwell's equations. The use of any slow varying amplitude approximation is avoided. Transfer matrices of sharp nonstationary interfaces are calculated explicitly, together with the amplitudes of all secondary waves produced in the scattering. Time-varying multilayer structures and spatiotemporal lenses in various configurations are investigated analytically and numerically in a unified approach. Several effects are reported, such as pulse compression, broadening and spectral manipulation of pulses by a spatiotemporal lens, and the closure of the forbidden frequency gaps with the subsequent opening of wave number band gaps in a generalized Bragg reflector.
利用麦克斯韦方程组的一种两组分、高度对称形式,研究了线性极化平面波和任意短电磁脉冲在具有任意时空折射率依赖性的一维无色散介质中的传播、传输和反射特性。避免使用任何缓变振幅近似。明确计算了尖锐非平稳界面的传输矩阵以及散射中产生的所有二次波的振幅。采用统一方法对各种配置下的时变多层结构和时空透镜进行了分析和数值研究。报道了几种效应,如时空透镜对脉冲的压缩、展宽和光谱操控,以及广义布拉格反射器中禁带的闭合和随后波数带隙的开启。