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程文雍
学位:工学博士学位
职称:副教授
所在单位:晶体材料研究院
教师英文名称:
Wenyong Cheng
教师拼音名称:
chengwenyong
入职时间:
2011-12-06
所在单位:
晶体材料研究院
学历:
研究生(博士后)
性别:
男
在职信息:
在职
毕业院校:
山东大学
是否在职:
1
博士生导师
硕士生导师
论文成果
[1] 袁俊杰. Nonlinear absorption properties in gold nanoparticles for passively Q-switched laser and optical limiting applications. Journal of nanoparticle research, 26, 2024.
[2] 袁俊杰. High efficiency high beam quality third harmonic generation of hundreds femtosecond laser by employing a delay line and LiB3O5 crystals. OPTICAL MATERIALS, 145, 2023.
[3] 张嘉宇. Amplification and frequency quadrupling of picosecond long duration burst-mode laser. Optics & Laser Technology, 158, 108848, 2023.
[4] 秦梦飞. Rapid Growth of KDP Crystals in the [101] Direction. CRYSTALS, 10, 2020.
[5] 张力元. Study on optical performance and 532 nm laser damage of rapidly grown KDP crystals. Optical materials, 114, 2021.
[6] 宋琛. High efficiency 355 nm laser by employing a flat-flat cavity with improved harmonic beam quality. Laser Physics Letter, 18, 2021.
[7] 杨厚文. Efficient third-harmonic generation of broadband picosecond radiation by employing spectrally noncritical phase-matching KDP crystal and cascaded LBO crystals. Optics and Laser Technology, 141, 2021.
[8] 宋琛. High efficiency high beam quality 1064 nm and 532 nm dual-wavelength laser switched by a quartz crystal. OPTICS COMMUNICATIONS, 478, 2021.
[9] 程文雍. High efficiency high beam quality 1064 nm and 532 nm dual-wavelength laser switched by a quartz crystal. Optics Communications, 128763, 2021.
[10] 杨厚文. Second-harmonic generation in one-dimensional ANDS microstructures by nanosecond laser radiation pulses. Optical materials, 110, 2020.
[11] 李大振 , 王波 , 程文雍 and 杨厚文. End-pump high efficiency 355 nm laser with a convex-concave cavity and optically-uncoated Brewster angle-cut LiB3O5 crystal. Journal of Optics (United Kingdom), 21, 2019.
[12] 任燕 , 程文雍 and 杨厚文. Nanosecond-Pulsed Frequency-Doubled Laser in Monoclinic Single-Crystalline KDP Microstructures. IEEE Photonic Technology Letter, 31, 1080, 2019.
[13] 程文雍 and 郝丽丽. Performance enhancement of ACO-OFDM-based VLC systems using a hybrid autoencoder scheme. OPTICS COMMUNICATIONS, 442, 110, 2019.
[14] 程文雍 and 郝丽丽. The Extended SLM Combined Autoencoder of the PAPR Reduction Scheme in DCO-OFDM Systems. Applied Sciences-Basel, 9, 2019.
[15] 门少杰 , 刘兆军 , 刘杨 , 丛振华 and 程文雍. Single frequency MOPA based on Nd: YAG single crystal fiber and rods. OPTICS LETTERS, 2016.
共46条 1/4
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