[1] Synergistic effect of a nanosecond-picosecond combined pulse laser on the regulation of surface properties and interfacial bonding strength of CFRP. Optics Express, 2025. (SCI二区)
[2] Analysis of the impact and mechanism of action of nanosecond single laser and nanosecond-picosecond compound laser on the surface properties of CFRP. Optics and Laser Technology, 2025. (SCI二区)
[3] Unlocking the Fluorescent Colour Code of Probe PBQ: Theoretical Study of the Magic Switch On/Off Mechanism for Excited-State
Proton Transfer, The Journal of Physical Chemistry A, 2025. (SCI二区)
[4]Comparative study of optical fiber immunosensors based on traditional antibody or nanobody for detecting HER2, Talanta,2024. (SCI二区)
[5]Composite membrane of graphene oxide and gold nanoparticles functionalized S fiber taper aptasensor for highly sensitive, Optics Letters, 2024. (SCI二区)
[6]Optical Liquid-Crystal Magnetic Field Sensor With Temperature Compensation, Talanta, 2024.(SCI二区)
[7]Optical fiber biosensor with a bilayer bio-sensitive film for label-free detection of pseudomonas exotoxin A, Chinese Optics Letters, 2024. (SCI二区)
[8]Liquid Crystal-Embedded Fiber Optic Fabry Perot Temperature Sensor Based on Vernier Effect, Measurement, 2023. (SCI二区)
[9]First-principles calculation and experimental study of mixed crystal Tm:(LuxY1-x)3AG, Infrared Physics & Technology, 2023. (SCI二区)
[10]2.1 μm self frequency conversion optical parameter oscillator based on Nd3+ doped MgO:PPLN, Optics and Laser Technology, 2021. (SCI二区)
[11]一种快速启动中红外激光器及相应的多晶体切换装置, 2022.
[12]一种基于多周期Nd:MgO:PPLN伺服匹配控制中红外差分双波长激光器,2022.
[13]一种基于Nd:MgO:LN的正交偏振双波长激光器及方法,2022.
[14]一种侧向泵浦Nd:MgO:PPLN中红外激光器及其双棱镜波长控制方法,2022.
[15]一种快速启动中红外激光器,2022.
[16]可实现腔倒空组晶压控制的驱动电源及控制方法和激光器,2022.
[17]单纵模与非单纵模双波长激光交替调Q输出方法及激光器, 2021.
[18]一种重频2倍于电光调Q频率的激光输出方法及激光器, 2020.
[19]一种单纵模激光器, 2020.
[20]一种架空线激光清障系统, 2020.
[21]激光诱导1064nm增透熔石英窗口损伤技术(著作), 2020.