论文标题

移动镜之间的电磁场:多普勒腔内的奇异波形

Electromagnetic fields between moving mirrors: Singular waveforms inside Doppler cavities

论文作者

Koutserimpas, Theodoros T., Valagiannopoulos, Constantinos

论文摘要

动态变化的结构中波传播的现象已经重新出现,因为介质特性的时间变化可以扩展电磁波操作的可能性。尽管电磁介质的性能的动态变化是一项艰巨的任务,但散射器的移动却不是。在本文中,我们分析了被困在两个平滑移动的镜子内的电磁场。我们采用了特征方法并考虑到相对论现象,以表明时间和空间上局部多普勒效应可以过滤和扩增电磁信号,从而定制瞬变的$ k-$和$ω-$。它使用多普勒因子和邻居特征之间的距离变化显示,边界的动态运动可能导致凝结特性,从而导致场扩增或稀释特征,从而导致信号衰减。在定期移动的镜像的情况下,场分布表明,由于机械振动的速度无法超过光线的速度,因此渐近地导致在离散空间点上呈指数增长的峰值峰值,并有限的峰数。理论分析还通过FDTD模拟验证,并与模式锁定理论相关。

Phenomena of wave propagation in dynamically varying structures have reemerged as the temporal variations of the medium's properties can extend the possibilities for electromagnetic wave manipulation. While the dynamical change of the electromagnetic medium's properties is a difficult task, the movement of scatterers is not. In this paper, we analyze the electromagnetic fields trapped inside two smoothly moving mirrors. We employ the method of characteristics and take into account the relativistic phenomena to show that the temporally and spatially local Doppler effects can filter and amplify the electromagnetic signal, tailoring the $k-$ and $ω-$content of the transients. It is shown using the Doppler factor and the change of the distance between neighbor characteristics that the dynamical movement of the boundaries can lead to condensated characteristics resulting in field amplification or dilution of the characteristics resulting in the attenuation of the signal. In the case of periodically moving mirrors the field distribution is shown that asymptotically leads to exponentially growing delta-like wave packets at discrete points of space with a limiting number of peaks due to the fact that the velocity of the mechanical vibrations can not exceed that of light. The theoretical analysis is also verified by FDTD simulations and is connected with the theory of mode locking.

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