理科部
所在位置: 首页» 师资队伍» 任课教师» 理科部
肖坤
发布时间:2021-11-23     文章来源:未来教育学院



姓名:肖坤

学历:博士

职称:讲师

邮箱:xiaokun@bnu.edu.cn

教育经历

中国科学院物理研究所,光学专业/理学博士/20122015

中国科学院上海光学精密机械研究所,光学工程专业/工学硕士/20092012

南京理工大学,光信息科学与技术专业/理学学士/20052009

承担课程

本科生通识教育课《普通物理实验 AI》

科研项目

1.“用于中红外超连续谱产生的全正色散硫系微结构光纤研究”,项目资助方:广东省教育厅青年创新人才项目,项目负责人

2.“面向生命体征参数监测的塑料微结构光纤关键技术研究”,项目资助方:广东省自然科学基金面上项目,课题组成员

3.“飞秒光纤激光器光谱拼接相干合成理论及关键技术研究”,项目资助方:国家自然科学基金面上项目,课题组成员

著作论文

  1. K. Xiao, J. Zhang, B. Lin, et al., Sensitive detection approaching 0.55 photon at 1064 nm using picosecond optical parametric amplifier. Opt. Commun. 326 (2014) 48-51.

  2. K. Xiao, B. Lin, Q.L. Zhang, et al., Q-switched 1329 nm Nd:CNGG laser. Appl. Opt. Vol. 54, No. 23 (2015) 7071-7075.

  3. K. Xiao, J. Zhang, B.Q. Chen, et al., Three wavelength generation from cascaded wavelength conversion in monolithic periodically poled lithium niobate. Chin. Phys. B, Vol. 24 No. 1 (2015) 014209.

  4. B. Lin, K. Xiao, Q.L. Zhang, et al., Dual-wavelength Nd:YAG laser operation at 1319 and 1338 nm by direct pumping at 885 nm. Appl. Opt. Vol. 55, No. 8 (2016) 1844-1848.

  5. N. Su, P.X. Li, K. Xiao, et al., Supercontinuum generation in seven-core photonic crystal fiber pumped by a broadband picosecond pulsed fiber amplifier. Chin. Phys. B, Vol. 26, No. 7 (2017) 074210.

  6. Y. Zhang, J. Zhu, P. Li, et al., All-fiber Yb-doped fiber laser passively mode-locking by monolayer MoS2 saturable absorber. Opt. Commun. 413 (2018) 236-241.

  7. P. Li, X. Wang, N. Su, et al., Picosecond Pulsed All-Fiber Yb-Doped Laser with High Repetition Rate and Wide Spectrum. Chin. J. Lasers, 44 (2017) 0201017.

  8. 李平雪, 辛承聪, 高健, 等. 皮秒激光加工研究进展与展望. 激光与红外, 48 (2018): 1195-1203.

会议论文

  1. K. Xiao, L. Bao, W. Wang, et al., Analysis of subsurface damage during fabrication process and its removal. 1st Pacific Rim Laser Damage Symposium on Optical Materials for High Power Lasers (PLD).

  2. 2. W. Wang, D. Liu, J. Miao, et al., Extrapolation of small area test of laser induced damage to large area test. 1st Pacific Rim Laser Damage Symposium on Optical Materials for High Power Lasers (PLD).