Liang Chengkang, Liu Dongxue, Liu Rao, Deng Dongmei, Wang Guanghui
Guangdong Provincial Key Laboratory of Nanophotonic Functional Materials and Devices, South China Normal University, Guangzhou, China.
Guangzhou Key Laboratory for Special Fiber Photonic Devices, South China Normal University, Guangzhou, China.
Nanophotonics. 2022 Jun 28;11(15):3475-3484. doi: 10.1515/nanoph-2022-0229. eCollection 2022 Aug.
The photonic spin Hall effect (PSHE), featured by a spin-dependent shift driven by its polarization handedness, is proposed to facilitate the applications in precision metrology and quantum information processing. Here, due to the magnetoelectric coupling of the chirality, the PSHE is accompanied with Goos-Hänchen and Imbert-Fedorov effects. Taking advantage of this superiority, the transverse shift (TS) and longitudinal shift (LS) can be applied simultaneously. Rearranging the PT-symmetric scattering matrix, the responsive PSHE near the exceptional points and their basic physical mechanisms are discussed in detail in the case of complex chirality . Re[] and Im[] regulated the rich (at multi-angle), gaint (reach upper limit) and tunable (magnitude and direction) TS and LS, respectively. Based on the chirality-modulated PSHE, the novel applications in binary code conversion and barcode encryption are proposed systematically. By incorporating the quantum weak measurement technology, our applications provide new mechanisms to realize optoelectronic communication.
光子自旋霍尔效应(PSHE)因其偏振手性驱动的自旋相关位移而具有特色,被认为有助于精密计量和量子信息处理中的应用。在此,由于手性的磁电耦合,PSHE伴随着古斯-汉欣效应和因伯特-费多罗夫效应。利用这一优势,可以同时应用横向位移(TS)和纵向位移(LS)。通过重新排列PT对称散射矩阵,详细讨论了复手性情况下在例外点附近的响应PSHE及其基本物理机制。实部[Re[]]和虚部[Im[]]分别调节丰富(多角度)、巨大(达到上限)和可调(幅度和方向)的TS和LS。基于手性调制的PSHE,系统地提出了在二进制代码转换和条形码加密中的新应用。通过结合量子弱测量技术,我们的应用提供了实现光电通信的新机制。