Whispering-gallery mode (WGM)-type microcavity has attracted increasing interests due to its extremely high Q factor, small mode volume, excellent scalability and ease for low-loss transport of light using an optical fiber. It opens a myriad of lab-on-chip applications ranging from fundamental physics to various applications. In this talk, we investigate the significantly enhanced interaction between light and matter in such microresonator, and focus on the applications in cavity quantum electrodynamics and highly sensitive sensing.
个人简介:
北京大学物理学院研究员。长期从事光学微腔显著增强光与物质相互作用的研究。研究领域涉及腔量子电动力学,量子信息,高灵敏传感器和低阈值芯片上激光器等。近些年来,发表学术论文60余篇,被引用超过700次,h因子达到15。
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