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磁振子诱导光学PT对称谐振器中的混沌现象

Magnon-induced chaos in an optical PT-symmetric resonator.

作者信息

Xu Wen-Ling, Liu Xiao-Fei, Sun Yang, Gao Yong-Pan, Wang Tie-Jun, Wang Chuan

机构信息

School of Science and the State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications, Beijing 100876, China.

出版信息

Phys Rev E. 2020 Jan;101(1-1):012205. doi: 10.1103/PhysRevE.101.012205.

Abstract

Optomagnonics supports optical modes with high-quality optical factors and strong photon-magnon interaction on the scale of micrometers. These novel features provide an effective way to modulate the electromagnetic field in optical microcavities. Here in this work, we studied the magnon-induced chaos in an optomagnonical cavity under the condition of parity-time symmetry, and the chaotic behaviors of electromagnetic field could be observed under ultralow thresholds. Even more, the existence optomagnetic interaction makes this chaotic phenomenon controllable through modulating the external field. This research will enrich the study of light matter interaction in the microcavity and provide a theoretical guidance for random number state generation and the realization of the chaotic encryption of information on chips.

摘要

光磁子学支持具有高品质光学因子和在微米尺度上强光子 - 磁子相互作用的光学模式。这些新颖特性提供了一种在光学微腔中调制电磁场的有效方法。在这项工作中,我们研究了宇称 - 时间对称条件下光磁子腔中磁子诱导的混沌现象,并且在超低阈值下可以观察到电磁场的混沌行为。更重要的是,光磁相互作用的存在使得通过调制外部场可以控制这种混沌现象。这项研究将丰富微腔中光与物质相互作用的研究,并为随机数态生成以及芯片上信息的混沌加密实现提供理论指导。

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