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Reversible generation of dissipative Kerr solitons in a microresonator by the backward tuning method

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【作者】 郑继辉倪菱蔓谷望航贾琳华翟宇润牛琼张福民曲兴华

【Author】 Jihui Zheng;Lingman Ni;Wanghang Gu;Linhua Jia;Yurun Zhai;Qiong Niu;Fumin Zhang;Xinghua Quc;Advanced Photonic Technology Laboratory,College of Electronic and Optical Engineering&College of Microelectronics,Nanjing University of Posts and Telecommunications;State Key Laboratory of Precision Measurement Technology and Instruments,Tianjin University;

【通讯作者】 张福民;

【机构】 Advanced Photonic Technology Laboratory,College of Electronic and Optical Engineering&College of Microelectronics,Nanjing University of Posts and TelecommunicationsState Key Laboratory of Precision Measurement Technology and Instruments,Tianjin University

【摘要】 Soliton generation schemes have attracted considerable scholarly attention. This paper introduces a novel backward tuning method for the reversible generation of dissipative Kerr solitons(DKSs). Reversible soliton generation relies on the thermal stabilization of the auxiliary laser, coupled with backward tuning of the pump laser, significantly increasing the range of soliton steps by over 10 times. Moreover, the method alleviates the stringent auxiliary laser detuning requirement. By adjusting the detuning of the auxiliary laser, diverse numbers of solitons can be deterministically generated, enhancing both flexibility and precision.

【Abstract】 Soliton generation schemes have attracted considerable scholarly attention. This paper introduces a novel backward tuning method for the reversible generation of dissipative Kerr solitons(DKSs). Reversible soliton generation relies on the thermal stabilization of the auxiliary laser, coupled with backward tuning of the pump laser, significantly increasing the range of soliton steps by over 10 times.Moreover, the method alleviates the stringent auxiliary laser detuning requirement. By adjusting the detuning of the auxiliary laser, diverse numbers of solitons can be deterministically generated, enhancing both flexibility and precision.

【基金】 supported by the National Key Research and Development Program of China (No. 2020YFB2010701);the Natural Science Research Start-up Foundation of Recruiting Talents of Nanjing University of Posts and Telecommunications (No. NY223154)
  • 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2024年07期
  • 【分类号】TN248
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