消逝光束的聚焦

M. Botey, Y. C. Cheng, R. Herrero, V. Romero-García, R. Picó, V. Sánchez-Morcillo, K. Staliūnas
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引用次数: 0

摘要

我们预测并证明了二维周期结构中存在未锁定的倏逝波。在一维周期结构中,倏逝模式位于布里渊区的中心或边界,波矢量的实部锁定为零或锁定为周期的调制矢量。然而,我们报告了一个意想不到的观察结果,即在2D或3D PhCs中,可以预测“解锁”的复杂模式的情况并非如此。一个有趣的结果是,由于它们的“复杂”特性,或者同样地,由于它们的相位自由,由这种倏逝波构成的光束可以显示聚焦效应。事实上,我们数值模拟了这种光束在PhC板的带隙中的传播,我们发现了明显的聚焦。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Focalization of evanescent beams
We predict and show the existence of unlocked evanescent waves in two dimensional periodic structures. In a one dimensional periodic structure an evanescent mode are located either at the center or at the boundary of the Brillouin Zone, and the real part of wave-vectors is locked either to zero or to the modulation vector of the periodicity. However, we report an unexpected observation that this is not the case in 2D or 3D PhCs where "unlocked" complex modes can be predicted. As an interesting consequence, due to their “complex” character, or, equivalently, due to their phase freedom, beams constructed from such evanescent waves can show focalization effects. Indeed, we numerically simulate the propagation of such beams in the bandgap of PhC slabs, and we find significant focalization.
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