首页> 中文期刊> 《中国高等学校学术文摘·光电子学》 >Highly stable and repeatable femtosecond soliton pulse generation from saturable absorbers based on two-dimensional Cu3-xP nanocrystals

Highly stable and repeatable femtosecond soliton pulse generation from saturable absorbers based on two-dimensional Cu3-xP nanocrystals

         

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  • 来源
    《中国高等学校学术文摘·光电子学》 |2020年第2期|139-148|共10页
  • 作者单位

    Department of Materials Science and Engineering and ARC Centre of Excellence in Future Low-Energy Electronics Technologies (FLEET) Monash University Clayton Victoria 3800 Australia;

    Jiangsu Key Laboratory of Advanced Laser Materials and Devices Jiangsu Collaborative Innovation Center of Advanced Laser Technology and Emerging Industry School of Physics and Electronic Engineering Jiangsu Normal University Xuzhou 221116 China;

    Institute of Functional Nano and Soft Materials (FUNSOM) Jiangsu Key Laboratory for Carbon-Based Functional Materials and Devices and Collaborative Innovation Center of Suzhou Nano Science and Technology Soochow University Suzhou 215123 China;

    Institute of Functional Nano and Soft Materials (FUNSOM) Jiangsu Key Laboratory for Carbon-Based Functional Materials and Devices and Collaborative Innovation Center of Suzhou Nano Science and Technology Soochow University Suzhou 215123 China;

    Institute of Functional Nano and Soft Materials (FUNSOM) Jiangsu Key Laboratory for Carbon-Based Functional Materials and Devices and Collaborative Innovation Center of Suzhou Nano Science and Technology Soochow University Suzhou 215123 China;

    Department of Materials Science and Engineering and ARC Centre of Excellence in Future Low-Energy Electronics Technologies (FLEET) Monash University Clayton Victoria 3800 Australia;

    Institute of Functional Nano and Soft Materials (FUNSOM) Jiangsu Key Laboratory for Carbon-Based Functional Materials and Devices and Collaborative Innovation Center of Suzhou Nano Science and Technology Soochow University Suzhou 215123 China;

    Joint Key Laboratory of the Ministry of Education Institute of Applied Physics and Materials Engineering (IAPME) University of Macau Macau China;

    Department of Materials Science and Engineering and ARC Centre of Excellence in Future Low-Energy Electronics Technologies (FLEET) Monash University Clayton Victoria 3800 Australia;

    Guangdong Provincial Key Laboratory of Optical Fiber Sensing and Communications Institute of Photonics Technology Jinan University Guangzhou 510632 China;

    Guangdong Provincial Key Laboratory of Optical Fiber Sensing and Communications Institute of Photonics Technology Jinan University Guangzhou 510632 China;

    Joint Key Laboratory of the Ministry of Education Institute of Applied Physics and Materials Engineering (IAPME) University of Macau Macau China;

    Joint Key Laboratory of the Ministry of Education Institute of Applied Physics and Materials Engineering (IAPME) University of Macau Macau China;

    Department of Materials Science and Engineering and ARC Centre of Excellence in Future Low-Energy Electronics Technologies (FLEET) Monash University Clayton Victoria 3800 Australia;

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