学术成果
部分代表性论文列表:
1.C. Yao, Z. Jia, Z. Li, S. Jia, Z. Zhao, L. Zhang, Y. Feng, G. Qin, Y. Ohishi, and W. Qin, High-power mid-infrared supercontinuum laser source using fluorotellurite fiber,Optica,2018,5(10):1264.
2.C. Yao, Z. Jia, Q. Li, G. Qin, M. Hu, Y. Ohishi, and W. Qin, Amplification of wavelength-shifting soliton in active photonic crystal fibers,Appl. Phys. Lett., 2018, 161105.
3.C. Yao, Z. Zhao, Z. Jia, Q. Li, M. Hu, G. Qin, Y. Ohishi, and W. Qin, Enhancement of phase-matched third harmonic generation via soliton self-frequency shift cancellation in a fluorotellurite microstructured fiber,Appl. Phys. Lett., 2017, 151103
4.C. Yao, Z. Zhao, Z. Jia, Q. Li, M. Hu, G. Qin, Y. Ohishi, and W. Qin, Mid-infrared dispersive waves generation in a birefringent fluorotellurite microstructured fiber,Appl. Phys. Lett., 2016, 109, 101102.
5.C. Yao, Z. Jia, C. He, S. Wang, L. Zhang, Y. Feng, Y. Ohishi, G. Qin, and W. Qin,2.074-μm Lasing From Ho3+-Doped Fluorotellurite Microstructured Fibers Pumped by a 1120-nm Laser,IEEE Photon. Technol. Lett., 2016, 28, 1084-1087.
6.C. Yao,C. He, Z. Jia, S. Wang, G. Qin, Y. Ohishi, and W. Qin,Holmium-doped fluorotellurite microstructured fibers for 2.1 μm lasing,Opt. Lett., 2015, 40, 4695-4698.
7.C. Yao, Z. Jia, S. Wang, Z. Kang, D. Zhao, W. Qin, and G. Qin, Tm3+Doped Tellurite Microstructure Fiber Laser,Chin. J. Lumin., 2014, 35, 1109-1113.
8.C. Yao, Z. Jia, N. Li, H. Jiang, L. Zhang, Y. Feng, Y. Ohishi, G. Qin, and W. Qin, Watt-Level 2.1 μm Laser output in a Holmium doped Fluorotellurite Microstructured Fiber,CLEO_SI.2016. SW4R. 2.
9.C. Yao, Z. Jia, S. Wang, C. He, G. Qin, and W. Qin, Tm3+or Ho3+Doped Fluorotellurite Microstructure Fiber for 2 μm Lasing,WSOF.2015.WT1A.6.
10. Z. Li,C. F. Yao,Z. Jia, F. Wang, G. Qin, Y. Ohishi, and W. Qin,Broadband supercontinuum generation from 600 to 5400 nm in a tapered fluorotellurite fiber pumped by a 2010 nm femtosecond fiber laser,Appl. Phys. Lett.115, 091103 (2019)
11. Z. Jia,C. Yao, S. Jia, F. Wang, S. Wang, Z. Zhao, G. Qin, Y. Ohishi, and W. Qin,4.5 W supercontinuum generation from 1017 to 3438 nm in an all-solid fluorotellurite fiber,Appl. Phys. Lett. 2017, 110, 261106.
12. Z. Jia,C. Yao, S. Jia, F. Wang, S. Wang, Z. Zhao, M. Liao, G. Qin, L. Hu, Y. Ohishi, and W. Qin,Supercontinuum generation covering the entire transmission window of 0.4 ~ 5 μm in a tapered ultra-high NA all-solid fluorotellurite fiber,Laser Phys. Lett., 2017,15, 025102.