日本語

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

155
2024-06-12 14:55:22
翻訳を見る

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

関連のおすすめ
  • Another blockbuster acquisition! The two equipment makers announced a merger to focus on laser construction

    Recently, RDO equipment announced the completion of its acquisition of Rocky Mountain Transit&laser, expanding the construction technology solutions, services and expertise of John Deere construction and Wirtgen group in eight stores in Idaho, Wyoming and Utah, RDO acquired the stores in December 2023.Adam Gilbertson, senior vice president of field technology and innovation at RDO, said the ac...

    2024-05-31
    翻訳を見る
  • Innovative laser technology: a novel quantum cavity model for superradiance emission

    Quantum optics is a complex field where theoretical and experimental physicists collaborate to achieve breakthroughs in explaining subatomic level phenomena.Recently, Farokh Mivehvar from the University of Innsbruck used the most comprehensive model in quantum optics, the Dicke model, to study the interaction between two groups of atoms in a quantized field. This new study makes it possible to obs...

    2024-03-16
    翻訳を見る
  • The University of California has developed a pioneering chip that can simultaneously carry lasers and photonic waveguides

    A team of computer and electrical engineers at UC Santa Barbara, in collaboration with several colleagues at Caltech and another colleague at Anello Photonics, has developed a first-of-its-kind chip that can carry both laser and photonic waveguides. In a paper published in the journal Nature, the team describes how they made the chip and how it worked during testing.With the advent of integrated c...

    2023-08-10
    翻訳を見る
  • Laser company nLIGHT announces financial results for the second quarter of 2024

    Recently, nLIGHT, a manufacturer of high-power semiconductors and fiber lasers, announced its financial performance for the second quarter of 2024.According to the financial report, nLIGHT achieved a revenue of $50.5 million in the second quarter of 2024, a year-on-year decrease of 5.2% and an increase of 13% compared to the first quarter; The GAAP net loss for the second quarter was $11.7 million...

    2024-08-20
    翻訳を見る
  • Graphene terahertz absorber and graded plasma metamaterials

    Optical metamaterials are an effective way to utilize their superior photon capture capabilities. Therefore, perfect absorbers can be achieved through nanoscale resonant plasmas and metamaterial structures.Metamaterial perfect absorbers (MPAs) are typically composed of periodic subwavelength metals (such as plasma superabsorbers) or dielectric resonance units. Compared with static passive physical...

    2024-05-20
    翻訳を見る