Ελληνικά

Shanghai Optical Machinery Institute has made progress in high-efficiency optical parametric amplification technology

190
2024-07-11 11:25:23
Δείτε τη μετάφραση

Recently, a joint research team composed of Sun Meizhi, associate researcher of the High Power Laser Physics Joint Laboratory of the Chinese Academy of Sciences Shanghai Institute of Optics and Precision Mechanics, and Tu Xiaoniu, associate researcher of the Chinese Academy of Sciences Shanghai Institute of Silicate, proposed a new configuration of cross Fabry Perot intracavity optical parametric amplification (XOPA), and completed the experimental demonstration based on the front platform of the SG - Ⅱ 5PW laser device. The related achievements are titled "Optical Parametric Amplification in Crossed Fabry Perot Cells" and published in Laser Photonics Reviews.

Optical parametric amplification (OPA) and chirped pulse optical parametric amplification (OPCPA) are important technological routes for rapidly developing high-power laser systems, and are also the mainstream technological routes for future tens to hundreds of watt laser systems. The development of this field has put forward comprehensive requirements for laser amplification technology in terms of efficiency, energy, bandwidth, gain, beam quality, signal-to-noise ratio, and shaping ability.

The research team placed nonlinear crystals in a cross Fabry Perot cavity, constrained signal light and pump light to achieve multi-pass transmission and energy conversion, phased elimination of idle light, suppression of mixing three wave energy backflow, and thus achieving monotonic extraction of signal light and pump light energy. In the experiment, the YCOB crystal provided by the Shanghai Institute of Ceramics was used to achieve an output capability of 56.28% conversion efficiency of pump light from signal light in the 800nm wavelength band and a spectral width of 120nm; In addition, researchers designed unequal cavity lengths for dual Fabry Perot cavities, achieving high contrast amplification and shaping of chirped pulse signal light. This study indicates that the XOPA configuration has the ability to shape in the time, space, and frequency domains under the premise of high conversion efficiency, and is generally suitable for non collinear optical parametric amplification processes in all bands and nonlinear crystals, which is of great significance for improving the comprehensive performance of high-power laser systems.

Relevant work has been supported by the key projects of international scientific and technological innovation cooperation between the Ministry of Science and Technology, the National Natural Science Foundation of China, the Shanghai Natural Science Foundation, the Class A project of the Chinese Academy of Sciences strategic leading science and technology project and the Shanghai Sailing Plan project.

Figure 1 Schematic diagram of XOPA configuration

Figure 2: (a) Spectral evolution and (b) Theoretical simulation and experimental results of the 7-pass amplification process of XOPA

Source: Shanghai Institute of Optics and Precision Machinery

Σχετικές προτάσεις
  • Laser engraving: Researchers have created a revolutionary technology

    Recently, a group of researchers from the University of Cambridge developed an innovative method of using high-energy lasers to improve 3D printing of metals. This discovery has the potential to change the way we design and manufacture complex metal objects.3D printing has completely changed the landscape of the manufacturing industry. However, it faces obstacles, especially in terms of the charac...

    2023-11-24
    Δείτε τη μετάφραση
  • Medium-long wavelength infrared quantum cascade laser of MOCVD on silicon

    Us researchers report 8.1 μm wavelength quantum cascade laser (QCL) grown on silicon (Si) by MOCVD [S. Xu et al., Applications. Physics Letters, v123, p031110, 2023]. "There are no previous reports of QCL growth on silicon substrates by metal-organic chemical vapor deposition (MOCVD)," commented the team from the University of Wisconsin-Madison, the University of Illinois at Urbana-Champaign an...

    2023-08-04
    Δείτε τη μετάφραση
  • Launching the world's strongest laser at a cost of 320 million euros

    Beijing, April 1st (Reporter Liu Xia) - The world's most powerful laser has been activated recently. On March 31st, the Physicist Organization Network reported that the system can enable laser pulses to reach a peak of 10 terawatts (1 terawatt=100 terawatts=1015 watts) within 1 femtosecond (1000 trillions of a second), which is expected to promote revolutionary progress in multiple fi...

    2024-04-03
    Δείτε τη μετάφραση
  • The construction of Hefei Advanced Light Source Project held a launch ceremony, expected to be completed and released in 5 years

    Recently, in the Future Science City of Hefei City, Anhui Province, the National Major Science and Technology Infrastructure Project and Supporting Projects of Hefei Advanced Light Source announced the start of construction, with a planned land area of approximately 656 acres. The first phase of the project is expected to be completed by September 2028.After completion, it will become an internati...

    2023-09-23
    Δείτε τη μετάφραση
  • Breakthrough in Light Manipulation: Revealing New Finite Barrier Bound States

    Exploring the propagation and localization of waves in various media has always been a core focus of optics and acoustics. Specifically, in photonics and phononics, scientists have been dedicated to understanding and controlling the behavior of light and sound waves in periodic media.Photonic crystals have unique bandgap characteristics, providing an excellent platform for studying wave propagatio...

    2024-03-25
    Δείτε τη μετάφραση