双稳态
谐振器
物理
成像体模
光学双稳态
背景(考古学)
共振(粒子物理)
光子
光电子学
原子物理学
光学
非线性光学
激光器
生物
古生物学
作者
Kai Guo,Lin Yang,Xiaodong Shi,Xuanming Liu,Yining Cao,Jingjing Zhang,Xiaolin Wang,Junbo Yang,Haiyan Ou,Yijun Zhao
标识
DOI:10.1103/physrevapplied.11.034007
摘要
This study presents $e\phantom{\rule{0}{0ex}}x\phantom{\rule{0}{0ex}}p\phantom{\rule{0}{0ex}}e\phantom{\rule{0}{0ex}}r\phantom{\rule{0}{0ex}}i\phantom{\rule{0}{0ex}}m\phantom{\rule{0}{0ex}}e\phantom{\rule{0}{0ex}}n\phantom{\rule{0}{0ex}}t\phantom{\rule{0}{0ex}}a\phantom{\rule{0}{0ex}}l$ evidence of nonclassical optical bistability, in the context of photon-pair generation via spontaneous four-wave mixing in a silicon microring resonator. The hysteresis results greatly benefit on-chip quantum optics, to build a bridge between classical and potential nonclassical applications of optical bistability in microcavities. This work also improves traditional resonance-locked strategies by balancing power-induced heating and active cooling; since no precise pump tuning is required, the proposed resonance-locked regime can be more widely applied in fixed-wavelength optical communication systems.
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