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Quantum characteristics of stimulated Cherenkov radiation in dielectric-lined waveguide operating at optical wavelengths

机译:在光学波长下工作的介质衬里波导中受激Cherenkov辐射的量子特性

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摘要

In this paper, a quantum mechanical model is proposed to describe the basic features of stimulated Cherenkov radiation in the small-signal low-gain regime. In this model, the electron is described by a wavepacket with finite spreading length and the electron wave function is a solution of the Schrödinger equation. We show that the quantum effects are manifested when the spreading length of the electron wave is much longer than the electromagnetic (EM) wavelength such as in the optical wavelength range. The effect of electron relaxation due to Coulombs collisions with neighboring electrons is introduced to characterize the damping of the vibration of the electron wave with time. When the relaxation effect is neglected, we prove that our essential results match with other classical and quantum approaches based on different theoretical concepts. © 2011 Elsevier B.V. All rights reserved.
机译:本文提出了一种量子力学模型来描述小信号低增益状态下受激切伦科夫辐射的基本特征。在此模型中,电子由具有有限扩展长度的波包描述,并且电子波函数是Schrödinger方程的解。我们表明,当电子波的扩展长度比电磁(EM)波长长得多时(例如在光学波长范围内),就会表现出量子效应。引入了由于库仑与相邻电子碰撞而引起的电子弛豫的影响,以表征电子波的振动随时间的衰减。当忽略松弛效应时,我们证明我们的基本结果与基于不同理论概念的其他经典方法和量子方法相匹配。 ©2011 Elsevier B.V.保留所有权利。

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