论文标题

与旋转对称的互相结构的任意非极化的反向散射或反射

Arbitrary Polarization-Independent Backscattering or Reflection by Rotationally-Symmetric Reciprocal Structures

论文作者

Chen, Weijin, Yang, Qingdong, Chen, Yuntian, Liu, Wei

论文摘要

我们研究了相互散射器的平面波的向后散射,并揭示了$ n $ fold($ n \ geq3 $)旋转对称性足以使不变的反向散射用于任意偏振的入射平面波。进一步证明,相同的原理在反射方面也适用于无限的周期性结构,如果既没有欧姆损失也没有额外的衍射通道,则可以同时保证传输不变性。在存在损失的情况下,可以纳入额外的反射对称性(具有平行或垂直于入射方向的反射平面),以确保同时的传播和吸收的不变性。我们揭示的原理受到互惠和平价保护的基本定律的保护,这些定律完全独立于光子结构的光学或几何参数。获得的光电不变性在保留互惠和几何对称性的扰动上本质上是鲁棒的,几何对称性可以广泛用于需要稳定的反向散射或反射的光子应用。

We study the backward scatterings of plane waves by reciprocal scatterers and reveal that $n$-fold ($n\geq3$) rotation symmetry is sufficient to secure invariant backscattering for arbitrarily-polarized incident plane waves. It is further demonstrated that the same principle is also applicable for infinite periodic structures in terms of reflection, which simultaneously guarantees the transmission invariance if there are neither Ohmic losses nor extra diffraction channels. At the presence of losses, extra reflection symmetries (with reflection planes either parallel or perpendicular to the incident direction) can be incorporated to ensure simultaneously the invariance of transmission and absorption. The principles we have revealed are protected by fundamental laws of reciprocity and parity conservation, which are fully independent of the optical or geometric parameters of the photonic structures. The optical invariance obtained is intrinsically robust against perturbations that preserve reciprocity and the geometric symmetries, which could be widely employed for photonic applications that require stable backscatterings or reflections.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源