纳米结构
光子学
材料科学
量子
光子晶体
连贯性(哲学赌博策略)
光电子学
纳米技术
量子线
量子门
量子纠缠
量子点
量子网络
液晶
拓扑(电路)
极化(电化学)
物理
量子传感器
纳米线
量子信息
布洛赫球面
纳米电子学
量子技术
作者
Shi‐Hui Ding,D X Zhu,Yi‐Heng Zhang,Liu S,Rui Sun,Wen Chen,Fang-Tianyu Chen,Jia Jiang,Yanqing Lu,Peng Chen
出处
期刊:Nano Letters
[American Chemical Society]
日期:2026-07-08
卷期号:26 (28): 9278-9286
标识
DOI:10.1021/acs.nanolett.6c02279
摘要
The photonic quantum system, as a prominent candidate for quantum information processing, possesses inherent advantages of room-temperature operation, a long coherence time, and a large encoding capacity. However, a conventional photonic quantum gate is usually limited by its bulky volume, complicated protocols, and fixed functions. Here, we find that chiral liquid crystal (CLC) nanostructure can offer a feasible platform for a dynamic photonic quantum gate. Tuning a uniformly self-assembled nanostructure enables a full rotation of the Bloch sphere within the short wavelength circular regime of the CLC, facilitating efficient implementation of the identity gate, S gate, and Pauli-Z gate. Furthermore, such a CLC gate enables dynamic control over the transformation between polarization-entangled states. It is utilized to control hybrid entanglement between the polarization and orbital angular momentum, linking the Poincaré sphere to the higher-order Poincaré sphere. This work demonstrates the potential of soft-matter CLC nanostructure to serve as a versatile platform in the photonic quantum system.
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