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Generation of Coherent and Spatially Squeezed States of an Electromagnetic Beam in a Planar Inhomogeneous Dielectric Waveguide

机译:平面非均匀介电波导中电磁束的相干态和空间压缩态的产生

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We use slow-varying amplitude approximation (SVA) for the wave equation to study both analytically and numerically propagation of an electromagnetic beam in the waveguide structure with parabolic susceptibility spatial dependence. Such a structure is similar to the harmonic oscillator in quantum mechanics. We analyze this structure as a single mode guide and introduce the notion of number of “photons” in the mode. In particular, we pay special attention to the possibility of effective build-up of the coherent and spatially squeezed vacuum states of the mode that can be of interest for a number of practical applications. The way to provide these types of mode excitation is suggested. Several applications for controlling the mode composition of an electromagnetic wave in the parabolic index-gradient waveguide for various frequency ranges are considered.
机译:我们对波方程使用慢变幅度近似(SVA),以分析和数值方式研究电磁波在抛物线磁化率空间依赖性下在波导结构中的传播。这种结构类似于量子力学中的谐波振荡器。我们将这种结构作为单模式指南进行分析,并介绍了该模式中“光子”数量的概念。特别是,我们特别注意有效建立模式的相干和空间压缩真空状态的可能性,这对于许多实际应用而言可能是有意义的。建议提供这些类型的模式激励的方法。考虑了用于控制抛物线折射率梯度波导中各种频率范围的电磁波的模式组成的几种应用。

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