简体中文

Shanghai Optics and Machinery Institute has made new progress in the research of high repetition frequency and high energy medium wave infrared lasers

968
2024-05-22 14:41:53
查看翻译

Recently, the research team of Aerospace Laser Technology and System Department of Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, based on 2.1 μ M Ho: YAG main oscillator amplifier pumped ZGP crystal, achieving high energy 3-5 at kHz repetition frequency μ The output of M medium wave infrared laser and further research on beam quality improvement technology for high-energy medium wave infrared laser. The relevant research results have been published in the Journal of Lightwave Technology and Laser Physics Letters, respectively, titled "High Repetition Rate 52-mJ Mid Infrared Laser Source Based on ZnGeP2 MOPA System" and "High repetition frequency, high energy mid wave infrared ZnGeP2 MOPA system".

High repetition rate, large pulse energy tunable 3-5 μ The mid infrared laser has important significance in many fields such as atmospheric monitoring. Among the methods that can achieve medium wave infrared laser output, nonlinear frequency conversion technology has advantages such as all solid-state, wide wavelength tuning range, and less heat generation. Due to the damage threshold of solid materials, the current pulse energy of medium wave infrared lasers at the kilohertz repetition rate level is only~10mJ, which is difficult to meet the needs of application fields.

In this study, researchers compensated for the crystal thermal lens and thermally induced birefringence depolarization effect through optical and structural design, and ultimately achieved high polarization 2.1 with a repetition frequency of 2kHz and an average power of~200W using the Ho: YAG MOPA system μ M laser output. By using its pumped ZGP optical parametric oscillator and amplifier, a 3-5 pulse repetition rate of 2kHz, average power of 103.9W, pulse energy of~52mJ, and pulse width of 18.3ns were achieved μ M produces mid infrared laser output, but there is a problem of poor beam quality (M2=10) in mid wave infrared laser. By studying techniques such as pump allocation ratio, single wavelength injection, and amplifier seed and pump divergence angle matching, the beam quality M2<4 was achieved at an average power of 53.3 W and a pulse energy of 26.7 mJ for medium wave infrared lasers. This research work has achieved high brightness, high repetition rate, and high-energy medium wave infrared laser output, enhancing the application prospects of this type of laser.

This work is supported by the National Natural Science Foundation of China.

Figure 1 Structure diagram of high repetition rate and high energy medium wave infrared laser device


Figure 2 ZGP OPA Output Power and Pulse Width


Figure 3 Medium wave infrared laser spectrum
Source: Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences

相关推荐
  • The output power of high power femtosecond laser breaking through the key bottleneck of average power can reach the order of 100 watts

    High energy, high average power femtosecond laser due to the attosecond high order harmonic generation, precision processing and manufacturing, biomedical and national defense and other fields of extensive application needs, is the forefront of ultrafast super laser technology research in the past decade.Especially fiber laser due to stable and reliable operation characteristics, compact structure...

    2023-09-04
    查看翻译
  • ZLDS100, a British high frequency laser displacement sensor, monitors multipoint vibration of silencers

    A muffler is a key component of a car's exhaust system, designed to reduce noise levels and emissions. The vibration of a muffler can have a significant impact on its performance and life. In order to understand the performance and behavior of the muffler, it is necessary to make multi-point vibration measurement. First, it enables engineers to assess the structural integrity and durability of a m...

    2023-08-04
    查看翻译
  • New technology from Swedish universities enables real-time laser beam forming and control

    Dr. Yongcui Mi from Western University in Sweden has developed a new technology that enables real-time laser beam shaping and control for laser welding and directional energy deposition using laser and metal wire. This innovative technology draws on the mirror technology used in advanced astronomical telescopes.Adaptive beam shaping using deformable mirror technology (Image source: Western Univer...

    2024-12-19
    查看翻译
  • Korean POSTECH develops stretchable color adjustable photonic devices

    Liquid crystal elastomers are expected to be applied in displays, sensors, smart devices, and wearable devices.A team from POSTECH University in South Korea, led by Professor Su Seok Choi and Professor Seungmin Nam, has developed a new type of stretchable photonic device that can control the wavelength of light in various directions.This work was carried out by the Department of Electrical Enginee...

    2024-06-11
    查看翻译
  • Vigo University School of Technology invents laser glass recycling system

    LaserON, a laser industrial application group at the University of Vigo, is leading a European project that aims to revolutionize the glass recycling process by developing a new technology called glass laser conversion, so that everyone can recycle at home. This group is led by Professor Juan Pou and Professor Rafael Comesa ñ a, and is part of Cintecx, leading EverGlass. Its partners come f...

    2024-01-19
    查看翻译