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Chaos generation by a hybrid integrated chaotic semiconductor laser

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【作者】 张明江牛亚楠赵彤张建忠刘毅徐雨航孟洁王云才王安帮

【Author】 Ming-Jiang Zhang;Ya-Nan Niu;Tong Zhao;Jian-Zhong Zhang;Yi Liu;Yu-Hang Xu;Jie Meng;Yun-Cai Wang;An-Bang Wang;Key Laboratory of Advanced Transducers and Intelligent Control System,Ministry of Education and Shanxi Province,Taiyuan University of Technology;Institute of Optoelectronic Engineering,College of Physics & Optoelectronics,Taiyuan University of Technology;

【机构】 Key Laboratory of Advanced Transducers and Intelligent Control System,Ministry of Education and Shanxi Province,Taiyuan University of TechnologyInstitute of Optoelectronic Engineering,College of Physics & Optoelectronics,Taiyuan University of Technology

【摘要】 We design a hybrid integrated chaotic semiconductor laser with short-cavity optical feedback. It can be assembled in a commercial butterfly shell with just three micro-lenses. One of them is coated by a transflective film to provide the optical feedback for chaos generation while insuring regular laser transmission. We prove the feasibility of the chaos generation in this compact structure and provide critical external parameters for the fabrication by theoretical simulations. Rather than the usual changeless internal parameters used in previous simulation research, we extract the real parameters of the chip by experiment. Moreover, the maps of the largest Lyapunov exponent with varying bias current and feedback intensity Kap demonstrate the dynamic characteristics under different external-cavity conditions. Each laser chip has its own optimal external cavity length(L) and feedback intensity(Kap) to generate chaos because of the different internal parameters. We have acquired two ranges of optimal parameters(L = 4 mm, 0.12 < Kap < 0.2 and L = 5 mm, 0.07 < Kap < 0.12) for two different chips.

【Abstract】 We design a hybrid integrated chaotic semiconductor laser with short-cavity optical feedback. It can be assembled in a commercial butterfly shell with just three micro-lenses. One of them is coated by a transflective film to provide the optical feedback for chaos generation while insuring regular laser transmission. We prove the feasibility of the chaos generation in this compact structure and provide critical external parameters for the fabrication by theoretical simulations. Rather than the usual changeless internal parameters used in previous simulation research, we extract the real parameters of the chip by experiment. Moreover, the maps of the largest Lyapunov exponent with varying bias current and feedback intensity Kap demonstrate the dynamic characteristics under different external-cavity conditions. Each laser chip has its own optimal external cavity length(L) and feedback intensity(Kap) to generate chaos because of the different internal parameters. We have acquired two ranges of optimal parameters(L = 4 mm, 0.12 < Kap < 0.2 and L = 5 mm, 0.07 < Kap < 0.12) for two different chips.

【基金】 Project supported by the International Science and Technology Cooperation Program of China(Grant No.2014DFA50870);the National Natural Science Foundation of China(Grant Nos.61377089,61475111,and 61527819);Shanxi Province Natural Science Foundation,China(Grant No.2015011049);Shanxi Province Youth Science and Technology Foundation,China(Grant No.201601D021069);Shanxi Scholarship Council of China(Grant No.2016-036);Program for the Outstanding Innovative Teams of Higher Learning Institutions of Shanxi,China;Program for Sanjin Scholar,China
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2018年05期
  • 【分类号】TN248.4
  • 【被引频次】2
  • 【下载频次】54
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