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Broadband third-order optical nonlinearities of layered franckeite towards mid-infrared regime

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【作者】 徐志强周甜甜李洁刘东阳何源李宁刘潇缪丽丽赵楚军文双春

【Author】 Zhi-Qiang Xu;Tian-Tian Zhou;Jie Li;Dong-Yang Liu;Yuan He;Ning Li;Xiao Liu;Li-Li Miao;Chu-Jun Zhao;Shuang-Chun Wen;Key Laboratory for Micro/Nano Optoelectronic Devices of Ministry of Education &Hunan Provincial Key Laboratory of Low-Dimensional Structural Physics and Devices, School of Physics and Electronics,Hunan University;School of Mechanical and Electrical Engineering, Heze University;

【通讯作者】 缪丽丽;

【机构】 Key Laboratory for Micro/Nano Optoelectronic Devices of Ministry of Education &Hunan Provincial Key Laboratory of Low-Dimensional Structural Physics and Devices, School of Physics and Electronics,Hunan UniversitySchool of Mechanical and Electrical Engineering, Heze University

【摘要】 The study of nonlinear optical responses in the mid-infrared(mid-IR) regime is essential for advancing ultrafast mid-IR laser applications.However,nonlinear optical effects under mid-IR excitation are rarely reported due to the lack of suitable nonlinear optical materials.The natural van der Waals heterostructure franckeite,known for its narrow bandgap and stability in air,shows great potential for developing mid-IR nonlinear optical devices.We have experimentally demonstrated that layered franckeite exhibits a broadband wavelength-dependent nonlinear optical response in the mid-IR spectral region.Franckeite nanosheets were prepared using a liquid-phase exfoliation method,and their nonlinear optical response was characterized in the spectral range of 3000 nm to 5000 nm.The franckeite nanosheets exhibit broadband wavelengthdependent third-order nonlinearities,with nonlinear absorption and refraction coefficients estimated to be about 10-7 cm/W and 10-11 cm2/W,respectively.Additionally,a passively Q-switched fluoride fiber laser operating around a wavelength of 2800 nm was achieved,delivering nanosecond pulses with a signal-to-noise ratio of 43.6 dB,based on the nonlinear response of franckeite.These findings indicate that layered franckeite possesses broadband nonlinear optical characteristics in the mid-IR region,potentially enabling new possibilities for mid-IR photonic devices.

【Abstract】 The study of nonlinear optical responses in the mid-infrared(mid-IR) regime is essential for advancing ultrafast mid-IR laser applications.However,nonlinear optical effects under mid-IR excitation are rarely reported due to the lack of suitable nonlinear optical materials.The natural van der Waals heterostructure franckeite,known for its narrow bandgap and stability in air,shows great potential for developing mid-IR nonlinear optical devices.We have experimentally demonstrated that layered franckeite exhibits a broadband wavelength-dependent nonlinear optical response in the mid-IR spectral region.Franckeite nanosheets were prepared using a liquid-phase exfoliation method,and their nonlinear optical response was characterized in the spectral range of 3000 nm to 5000 nm.The franckeite nanosheets exhibit broadband wavelengthdependent third-order nonlinearities,with nonlinear absorption and refraction coefficients estimated to be about 10-7 cm/W and 10-11 cm2/W,respectively.Additionally,a passively Q-switched fluoride fiber laser operating around a wavelength of 2800 nm was achieved,delivering nanosecond pulses with a signal-to-noise ratio of 43.6 dB,based on the nonlinear response of franckeite.These findings indicate that layered franckeite possesses broadband nonlinear optical characteristics in the mid-IR region,potentially enabling new possibilities for mid-IR photonic devices.

【基金】 Project supported by the National Natural Science Foundation of China (Grant No. 61975055);the Natural Science Foundation of Hunan Province,China (Grant No. 2023JJ30165);the Natural Science Foundation of Shandong Province,China (Grant No. ZR2022QF005);the Doctoral Fund of University of Heze (Grant No. XY22BS14)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2024年10期
  • 【分类号】O437
  • 【下载频次】3
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