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作 者:Xiao-Ran Xiong Yong-Pan Gao Xiao-Fei Liu Cong Cao Tie-Jun Wang Chuan Wang
机构地区:[1]School of Science and the State Key Laboratory of Information Photonics and Optical Communications,Beijing University of Posts and Telecommunications, Beijing 100876, China [2]School of Ethnic Minority Edacation Beijing University of Posts and Telecommunications, Beijing 100876, China
出 处:《Science China(Physics,Mechanics & Astronomy)》2018年第9期95-98,共4页中国科学:物理学、力学、天文学(英文版)
基 金:supported by the Ministry of Science and Technology of China(MOST)(Grant No.2016YFA0301304);the National Natural Science Foundation of China(Grant Nos.61622103,61471050,and 61671083)
摘 要:Cavity optomechanics[1,2]reveals the interaction between the optical mode and mechanical mode via radiation pressure.Recently,optomechanics is widely studied as an ideal interface between the optical field and microwave field,and the advantages of optomechanics show great potential for ap-plications in various fields, such as high-precision measure- ment [3, 4], mechanical cooling [5, 6], quantum information processing [7-10], and nanophotonic devices [ 11-14].Cavity optomechanics[1,2]reveals the interaction between the optical mode and mechanical mode via radiation pressure.Recently,optomechanics is widely studied as an ideal interface between the optical field and microwave field,and the advantages of optomechanics show great potential for ap-
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