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1) Jianlan Xie, Shengnan Liang, Jianjun Liu*, Pinghua Tang*, and Shuangchun Wen "Near-zero-sidelobe optical subwavelength asymmetric focusing lens with dual-layer metasurfaces,"Ann. Phys. (Berlin), 532(7): 2000035 (2020).
2) Yan Li, Jie Peng, Chao Tan, and Pinghua Tang*, "Numerical investigation on the dynamic propagation of finite-energy Airy pulses in photonic crystal fibre," J. Mod. Opt., 67(5): 445-453 (2020).
3) Chunxiang Zhang, Jiadong Wu, Pinghua Tang*, Chujun Zhao, and Shuangchun Wen, "~3.5 μm Er3+: ZBLAN fiber laser in dual-end pumping regime," IEEE Access, 7(1): 147238-147243 (2019).
4) Bo Wang, Wenbiao Zhu, Pinghua Tang*, and Xiang Qi, "Graphene-like tungsten sulphide nanosheets prepared by hydrothermal intercalation/exfoliation route and its application for photodetector," Fullerenes, Nanotubes and Carbon Nanostruct., 27(12): 928-933 (2019)
5) Yan Li, and Pinghua Tang*, "Influence of initial frequency chirp on the supercontinuum generation in As2S3 chalcogenide fiber," Journal of Physics: Conf. Series, 1303, 012116 (2019).
6) Shengnan Liang, Jianlan Xie, Pinghua Tang*, and Jianjun Liu*, "Large object distance and super-resolution graded-index photonic crystal flat lens," Opt. Express, 27(7): 9601-9609(2019).
7) Feijuan Zhang, Wenyan Yan, Shengnan Liang, Chao Tan, and Pinghua Tang*, "Numerical study on the soliton mode-locking of the Er3+-doped fluoride fiber laser at ~3 μm with nonlinear polarization rotation," Photon., 6(1): 25, (2019).
8) Man Wu, Jun Liu, Ying Li, Pinghua Tang*, "Stable and efficient pulsed mid-infrared laser generation from an Er3+-doped ZBLAN fiber laser," J Russ. Laser Res., 39(2): 177-181 (2018).
9) Pinghua Tang, Yue Tao, Yuliang Mao, Man Wu, Zongyu Huang, Shengnan Liang, Xinhang Chen, Xiang Qi, Bin Huang, Jun Liu, and Chujun Zhao, "Graphene/MoS2 heterostructure: a robust mid-infrared optical modulator for Er3+-doped ZBLAN fiber laser," Chin. Opt. Lett., 16(2): 020012 (2018).
10) Shuhua Liu, Zongyu Huang, Xiaohui Ren, Xinhang Chen, Hui Qiao, Pinghua Tang*, and Xiang Qi, "P25/Black phosphorus/Graphene hybrid for enhanced photocatalyticactivity," J. Mater. Sci.: Materials in Electronics, 29(6): 4441-4448 (2018).
11) Pinghua Tang, Feijuan Zhang, Mu Wu, Bin Huang, Jun Liu, Xiang Qi, Boquan Liu, and Chujun Zhao, "Stable Q-switched operation of a resonantly diode pumped Er:YAG laser at 1617 nm and 1645 nm by Cr2+:ZnSe crystal," J. Nonlinear Opt. Phys. & Mater., 26(04): 1750047 (2017) .
12) Fubin Zhang, Pinghua Tang*, Man Wu, Bin Huang, Jun Liu, Xiang Qi, and Chujun Zhao, "Voltage-on-type RTP pockels cell for Q-switch of an Er:YAG laser at 1617 nm," J Russ. Laser Res., 38(4): 339-343 (2017).
13) Pinghua Tang, Mu Wu, Qin Kai Wang, Li Li Miao, Jun Liu, Chujun Zhao, and Shuangchun Wen, “2.8 μm pulsed Er3+: ZBLAN fiber laser modulated by topological insulator,” IEEE Photon. Technol. Lett., 28(14): 1573-1576 (2016).
14) Pinghua Tang, Zhipeng Qin, Jun Liu, Chujun Zhao, Guoqiang Xie, Shuangchun Wen, and Liejia Qian, “Watt-level passively mode-locked Er3+-doped ZBLAN fiber laser at 2.8 μm,” Opt. Lett., 40(21): 4855-4858 (2015). [Selected for inclusion in Today’s Top Downloads by Optics Letters]
15) Pinghua Tang, Jun Liu, Bin Huang, Changwen Xu, Chujun Zhao, and Shuangchun Wen, “Stable and wavelength-locked Q-switched narrow-linewidth Er:YAG laser at 1645 nm,” Opt. Express, 23(9): 11037-11042 (2015). [Highlights by Optics Express-Feature issue: Light, Energy and the Environment]
16) Jun Liu, Pinghua Tang(equal), Yu Chen, Chujun Zhao, Deyuan Shen, Shuangchun Wen, and Dianyuan Fan, “Highly efficient tunable mid-infrared optical parametric oscillator pumped by a wavelength locked, Q-switched Er:YAG laser,” Opt. Express, 23(16): 20812- 20819 (2015).
17) Pinghua Tang, Jun Liu, Changwen Xu, Chujun Zhao, and Shuangchun Wen, “Robust wavelength-locked narrow-linewidth Er-doped yttrium aluminum garnet laser,” Appl. Phys. Express, 8(1): 012703 (2015).
18) Pinghua Tang, Rou Zhou, Chujun Zhao, Changwen Xu, Jun Liu, Han Zhang, Deyuan Shen, and Shuangchun Wen, “Stable high energy Q-switched resonantly diode pumped Er:YAG laser at 1645 nm,” Appl. Opt., 53(32): 7773-7777 (2014). [Selected for inclusion in Virtual Journal for Biomedical Optics (VJBO), –December, 2014, Volume 9, Issue 13.]
19) Rong Zhou, Pinghua Tang(equal), Yu Chen, Shuqing Chen, Chujun Zhao, Han Zhang, and Shuangchun Wen, “Large-energy, narrow-bandwidth laser pulse at 1645 nm in a diode-pumped Er:YAG solid-state laser passively Q-switched by a monolayer graphene saturable absorber,” Appl. Opt., 53(2): 254-258 (2014).
20) Pinghua Tang, Hua Yang, Boyan Wang, and Weibin Wang, “Wide and stable optical frequency comb in intensity-modulated continuous wave pumped optical fiber,” Laser Phys., 24(11): 115403 (2014).
21) Pinghua Tang, Chujun Zhao, Rou Zhou, Han Zhang, and Shuangchun Wen, “Stable high slope efficiency, narrow linewidth Er:YAG laser with a volume Bragg grating,” OSA proceeding on Advanced Solid State Lasers, 2014,paper AM5A.17.
22) Pinghua Tang, Xiaoqi Zhang, Chujun Zhao, Yong Wang, Han Zhang, Deyuan Shen, Shuangchun Wen, Dingyuan Tang, and Dianyuan Fan, “Topological Insulator: Bi2Te3 Saturable Absorber for the Passive Q-Switching Operation of an in-Band Pumped 1645-nm Er:YAG Ceramic Laser,” IEEE Photon. J., 5(2): 1500707 (2013). [ESI高被引论文]