Active deflection angle switching via the phase change of GeiSbiTes nanorod metasurface

Chulsoo Choi, Sun-Je Kim, Byoungho Lee
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Abstract

We propose a novel method for active switching of optical deflection angle via the phase change of GeiSbiTes (GST) metasurface. The metasurface is composed of GST nanorods whose geometries are designed by means of Pancharatnam-Berry phase and propagation phase to switch transmission directivity via the phase change. As a result, assuming normal incidence of circularly polarized light at the wavelength of 1650 nm, we achieved deflection angle switching of transmitted light with cross-polarization from −24.4° to +24.4° according to change of GST phase from the amorphous to the crystalline phase.
基于GeiSbiTes纳米棒超表面相变的主动偏转角切换
提出了一种利用GeiSbiTes (GST)超表面的相变来实现光偏转角主动切换的新方法。超表面由GST纳米棒组成,纳米棒的几何形状采用Pancharatnam-Berry相位和传播相位设计,通过相变来切换传输方向性。因此,假设圆偏振光在波长为1650 nm处正入射,我们根据GST相从非晶相到结晶相的变化,实现了交叉极化透射光的偏转角度从−24.4°到+24.4°的切换。
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