角动量
多路复用
涡流
拓扑量子数
物理
实现(概率)
旋涡
厄米矩阵
调制(音乐)
光通信
自旋(空气动力学)
波长
拓扑(电路)
光学
量子力学
电信
计算机科学
工程类
电气工程
热力学
统计
数学
声学
作者
Zhifeng Zhang,Xingdu Qiao,Bikashkali Midya,Kevin Liu,Jingbo Sun,Tianwei Wu,Wenjing Liu,Ritesh Agarwal,Josep Miquel Jornet,Stefano Longhi,Natalia M. Litchinitser,Liang Feng
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2020-05-14
卷期号:368 (6492): 760-763
被引量:240
标识
DOI:10.1126/science.aba8996
摘要
The orbital angular momentum (OAM) intrinsically carried by vortex light beams holds a promise for multidimensional high-capacity data multiplexing, meeting the ever-increasing demands for information. Development of a dynamically tunable OAM light source is a critical step in the realization of OAM modulation and multiplexing. By harnessing the properties of total momentum conservation, spin-orbit interaction, and optical non-Hermitian symmetry breaking, we demonstrate an OAM-tunable vortex microlaser, providing chiral light states of variable topological charges at a single telecommunication wavelength. The scheme of the non-Hermitian-controlled chiral light emission at room temperature can be further scaled up for simultaneous multivortex emissions in a flexible manner. Our work provides a route for the development of the next generation of multidimensional OAM-spin-wavelength division multiplexing technology.
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