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华南师范大学信息光电子科技学院导师教师师资介绍简介-刘萌

本站小编 Free考研考试/2021-05-25

个人简介

姓名:刘萌
职称:讲师
办公地点:理四栋408
教研室名称:光电子材料与器件教研室
联系方式:mliu@m.scnu.edu.cn


学习和工作经历:
1. 2017.07.18–至今: 华南师范大学信息光电子科技学院 讲师
2. 2012.09.01–2017.07.01: 华南师范大学 微电子学与固体电子学 博士
3. 2008.09.01–2012.07.01: 中国计量大学 光信息科学与技术 学士


研究方向:超快激光技术、孤子非线性动力学、微纳光纤光子器件
科研项目:
1. 国家自然科学基金青年基金项目:反常色散超快光纤激光器中孤子爆炸特性研究(**);起止时间:2019.01-2021.12;主持
2. 广东省普通高校青年创新人才项目:基于石墨烯沉积微纳光纤环谐振器的高重频飞秒脉冲光纤激光器特性研究(2017KQNCX051);起止时间:2018.01-2019.12;主持
3. 国家自然科学基金面上项目:超快光纤激光器中耗散孤子碰撞瞬态动力学特性研究(**);起止时间:2019.01-2022.12;参与


获奖情况:
1. 2017年获王大珩光学奖高校学生奖
论文专著:
1. M. Liu, R. Tang, A. P. Luo, W. C. Xu, Z. C. Luo, “Graphene-decorated microfiber knot as a broadband resonator for ultrahigh-repetition-rate pulse fiber lasers [Invited],” Photon. Res. 6(10), C1-C7 (2018).
2. Z. W. Wei, M. Liu*, S. X. Ming, A. P. Luo, W. C. Xu, and Z. C. Luo, “Pulsating soliton with chaotic behavior in a fiber laser,” Opt. Lett. 43(24), 5965 (2018).
3. M. Liu, H. Li, A. P. Luo, H. Cui, W. C. Xu, Z. C. Luo, “Real-time visualization of soliton molecules with evolving behavior in an ultrafast fiber laser,” J. of Opt. 20(3), 034010 (2018).
4. M. Liu, A. P. Luo, W. C. Xu and Z. C. Luo, “Coexistence of bound soliton and harmonic mode-locking soliton in an ultrafast fiber laser based on MoS2-deposited microfiber photonic device,” Chin. Opt. Lett. 16(2), 020008 (2018).
5. M. Liu, X. F. Jiang, Y. R. Yan, X. D. Wang, A. P. Luo, W. C. Xu, Z. C. Luo, “Black phosphorus quantum dots for femtosecond laser photonics,” Opt. Commun. 406, 85-90 (2018).
6. M. Liu, H. J. Chen, A. P. Luo, G. Y. Zhou, Z. C. Luo, W. C. Xu, “Identification of Coherent and Incoherent Spectral Sidebands in an Ultrafast Fiber Laser,” IEEE J. Sel. Top. Quantum Electron. 24 (3), 1-6 (2017).
7. M. Liu, A. P. Luo, Z. C Luo, W. C. Xu, “Dynamic trapping of a polarization rotation vector soliton in a fiber laser,” Opt. Lett. 42 (2), 330-333 (2017).
8. M. Liu, A. P. Luo, W. C. Xu, and Z. C. Luo, “Dissipative rogue waves induced by soliton explosions in an ultrafast fiber laser,” Opt. Lett. 41(17), 3912-3915 (2016).
9. M. Liu, A. P. Luo, Y. R. Yan, S. Hu, Y. C. Liu, H. Cui, Z. C. Luo, and W. C. Xu, “Successive soliton explosions in an ultrafast fiber laser,” Opt. Lett. 41(6), 1181-1184 (2016).
10. M. Liu, Z. R. Cai, S. Hu, A. P. Luo, C. J. Zhao, H. Zhang, W. C. Xu, and Z. C. Luo, “Dissipative rogue waves induced by long-range chaotic multi-pulse interactions in a fiber laser with a topological insulator-deposited microfiber photonics device,” Opt. Lett. 40(20), 2667-2770 (2015).
11. M. Liu, A. P. Luo, X. W. Zheng, N. Zhao, H. Liu, Z. C. Luo, W. C. Xu, Y. Chen, C. J. Zhao, and H. Zhang, “Microfiber-based highly nonlinear topological insulator photonic device for the formation of versatile multi-soliton patterns in a fiber laser,” IEEE/OSA J. Lightwave Technol. 33(10), 2056-2061 (2015).
12. M. Liu, X. W. Zheng, Y. L. Qi, H. Liu, A. P. Luo, Z. C. Luo, W. C. Xu, C. J. Zhao, and H. Zhang, “Microfiber-based few-layer MoS2 saturable absorber for 2.5 GHz passively harmonic mode-locked fiber laser,” Opt. Express 22, 22841-22846 (2014).
13. M. Liu, N. Zhao, H. Liu, X. W. Zheng, A. P. Luo, Z. C. Luo, W. C. Xu, C. J. Zhao, H. Zhang and S. C. Wen, “Dual-wavelength harmonically mode-locked fiber laser with topological insulator saturable absorber,” IEEE Photon. Technol. Lett. 26(10), 983-986 (2014).
14. M. Liu, H. Liu, X. W. Zheng, N. Zhao, A. P. Luo, Z. C. Luo, and W. C. Xu, “Demonstration of multiwavelength erbium-doped fiber laser based on a microfiber knot resonator,” IEEE Photon. Technol. Lett. 26(14), 1387-1390 (2014).
15. H. J. Chen, M. Liu, J. Yao, S. Hu, J. B. He, A. P. Luo, W. C. Xu, Z. C. Luo, “Buildup dynamics of dissipative soliton in an ultrafast fiber laser with net-normal dispersion,” Opt. Express 26(3), 2972-2982 (2018).
16. H. J. Chen, M. Liu, J. Yao, S. Hu, J. B. He, A. P. Luo, Z. C. Luo, W. C. Xu, “Soliton Booting Dynamics in an Ultrafast Anomalous Dispersion Fiber Laser,” IEEE Photon. J. 10(2), 1-9 (2018).
17. Z. C. Luo, M. Liu, A. P. Luo and W. C. Xu, “Two-dimensional materials-decorated microfiber devices for pulse generation and shaping in fiber lasers,” Chinese Physics B, 27(90), 094215 (2018).
18. Z. R. Cai, M. Liu, S. Hu, J. Yao, A. P. Luo, Z. C. Luo, and W. C. Xu, “Graphene-decorated microfiber photonic device for generation of rogue waves in a fiber laser,” IEEE J. Sel. Top. Quantum Electron. 23(1), ** (2016).
19. A. P. Luo, M. Liu, X. D. Wang, Q. Y. Ning, W. C. Xu, and Z. C. Luo, “Few-layer MoS2-deposited microfiber as highly nonlinear photonic device for pulse shaping in a fiber laser [Invited],” Photonics Res. 3(2), A69-A78 (2015).
20. Z. C. Luo, M. Liu, Z. N. Guo, X. F. Jiang, A. P. Luo, C. J. Zhao, X. F. Yu, W. C. Xu, and H. Zhang, “Microfiber-based few-layer black phosphorus saturable absorber for ultra-fast fiber laser,” Opt. Express 23(15), 20030-20039 (2015).
21. N. Zhao, M. Liu, H. Liu, X. W. Zheng, Q. Y. Ning, A. P. Luo, Z. C. Luo, and W. C. Xu, “Dual-wavelength rectangular pulse Yb-doped fiber laser using a microfiber-based graphene saturable absorber,” Opt. Express 22(9), 10906–10913 (2014).
22. Z. C. Luo, M. Liu, H. Liu, X. W. Zheng, A. P. Luo, C. J. Zhao, H. Zhang, S. C. Wen, and W. C. Xu, “2 GHz passively harmonic mode-locked fiber laser by a microfiber-based Topological Insulator saturable absorber,” Opt. Lett. 38(24), 5212-5215 (2013).




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