Tiếng Việt

Shanghai Optics and Machinery Institute has made progress in the development of picosecond reflectors based on composite materials

392
2024-06-12 14:55:22
Xem bản dịch

Recently, the High Power Laser Element Technology and Engineering Department of the Shanghai Institute of Optics and Mechanics, Chinese Academy of Sciences, has made progress in the research of picosecond reflectors based on composite materials. The relevant research results are titled "Hybrid material based mirror coatings for picosecond laser applications" and published in Optics and Laser Technology.

Picosecond pulse lasers are often used in high-energy density physics basic research. As a key component of picosecond laser systems, the laser damage threshold of the reflector directly affects the output energy of the picosecond laser system. Traditional picosecond laser reflectors use hafnium oxide and silicon oxide as high and low refractive index materials, respectively. In recent years, composite materials, including nano layers and mixtures, have received widespread attention in improving the laser damage threshold of thin film components. Studying the picosecond reflectors of composite materials and their laser damage characteristics under different pulse widths of laser irradiation has certain practical application value.

Figure 1. (a) AFM microscopy images and RMS roughness of different mirrors (b) probability distribution of laser induced damage (8ps, 1053 nm)

Figure 2. Probability distribution of laser induced damage with different pulse widths (a) 0.5 ps (b) 1 ps and (c) 3 ps (d) Changes in laser damage threshold with laser pulse width

Researchers used electron beam evaporation technology to prepare four types of composite materials, including hafnium oxide/alumina nano layers, hafnium oxide/silicon oxide nano layers, hafnium oxide alumina mixtures, and hafnium oxide silicon oxide mixtures. Compared with single hafnium oxide materials, composite materials can inhibit crystallization and reduce surface roughness. Four types of reflective mirrors with operating wavelengths at 1053 nm were prepared using the above-mentioned composite materials and silicon oxide materials as high and low refractive index materials. The damage test results of the mirror under laser irradiation with different pulse widths (0.5 ps, 1 ps, 3 ps, and 8 ps) show that compared with the picosecond mirror using hafnium oxide as a high refractive index material, the picosecond mirror using composite materials as a high refractive index material exhibits a higher excitation damage threshold. Within the laser pulse range studied in this article, the initial laser damage mechanism of the reflector begins to change around 3 ps. This achievement is of great significance for improving the performance of optical thin film components such as picosecond laser reflectors.

Source: Shanghai Institute of Optics and Mechanics

Đề xuất liên quan
  • Shanghai Optical Machine has made progress in frequency shift of even harmonic of single layer MoS2

    Recently, the research team of the State Key Laboratory of High-Field Laser Physics at the Shanghai Institute of Optics and Fine Mechanics of the Chinese Academy of Sciences has made progress in using high-field lasers to drive the even harmonic frequency shift of single-layer MoS2. The results were published in Optics Express under the title "Frequency shift of even-order high harmonic generation...

    2023-09-07
    Xem bản dịch
  • 20 million dollars! Undersea fiber optic agreement reached, fully operational by 2026

    Recently, Confluence Networks LLC has announced a long-term partnership agreement with Laser Light Communications Inc., a developer and provider of software controlled optical network services.According to the agreement, Laser Light will adopt Confluence-1 submarine fiber optic network, which Confluence Networks is about to launch, as the core part of its global network. The protocol will last for...

    2024-05-24
    Xem bản dịch
  • NSF funding for the world leading EP-OPAL laser multi mechanism design in Rochester

    The National Science Foundation (NSF) of the United States has awarded the University of Rochester nearly $18 million for three years to design and prototype key technologies for EP-OPAL, a new facility dedicated to studying the interaction between ultra-high intensity lasers and matter.After the design project is completed, the facility can be built at the Laser Energy Laboratory (LLE). This fund...

    2023-09-26
    Xem bản dịch
  • The innovative application of carbon fiber laser cutting in the aircraft fuselage can significantly reduce the overall weight and reduce fuel consumption

    As one of the important means of transportation in modern society, the safety and performance of aircraft have always been the focus of attention. Behind the continuous pursuit of technological breakthroughs in the aviation industry, carbon fiber materials, as a lightweight and high-strength material, are gradually emerging in the application of aircraft fuselage.Combined with the application of ...

    2023-08-23
    Xem bản dịch
  • A German 3D printing company applies for bankruptcy

    On February 5th, it was reported that Q BIG 3D GmbH filed for bankruptcy on January 31, 2025. The Ludwigsburg District Court has ordered temporary bankruptcy administration and appointed Mr. Ilkin Bananyarli of PLUTA Rechtsanwarts GmbH as the temporary bankruptcy administrator.The company was founded in 2019 and focuses on large format particle 3D printing systems, providing additive manufacturing...

    02-06
    Xem bản dịch