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Observation of a manifold in the chaotic phase space of an asymmetric optical microcavity 被引量:2
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作者 yan-jun qian Qi-Tao CAO +6 位作者 Shuai Wan Yu-Zhong Gu Li-Kun Chen Chun-Hua Dong Qinghai Song Qihuang Gong Yun-Feng Xiao 《Photonics Research》 SCIE EI CAS CSCD 2021年第3期364-369,共6页
Chaotic dynamics in optical microcavities, governed dominantly by manifolds, is of great importance for both fundamental studies and photonic applications. Here, we report the experimental observation of a stable mani... Chaotic dynamics in optical microcavities, governed dominantly by manifolds, is of great importance for both fundamental studies and photonic applications. Here, we report the experimental observation of a stable manifold characterized by energy and momentum evolution in the nearly chaotic phase space of an asymmetric optical microcavity. By controlling the radius of a fiber coupler and the coupling azimuth of the cavity, corresponding to the momentum and position of the input light, the injected light can in principle excite the system from a desired position in phase space. It is found that once the input light approaches the stable manifold, the angular momentum of the light experiences a rapid increase, and the energy is confined in the cavity for a long time.Consequently, the distribution of the stable manifold is visualized by the output power and the coupling depth to high-Q modes extracted from the transmission spectra, which is consistent with theoretical predictions by the ray model. This work opens a new path to understand the chaotic dynamics and reconstruct the complex structure in phase space, providing a new paradigm of manipulating photons in wave chaos. 展开更多
关键词 MANIFOLD CHAOTIC MOMENTUM
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