한국어

New progress in research on laser cleaning and improving the damage threshold of fused quartz components at Shanghai Optics and Machinery Institute

632
2024-07-08 14:48:44
번역 보기

Recently, the research team of the High Power Laser Element Technology and Engineering Department of the Shanghai Institute of Optics and Mechanics, Chinese Academy of Sciences, has made new progress in the study of improving the damage threshold of fused quartz elements through laser cleaning. The study proposes for the first time the use of microsecond pulse CO2 laser cleaning to enhance the damage resistance performance of fused quartz components. The relevant research results were published in the International Journal of Mechanical Sciences under the title "Microsecond pulsed CO2 laser cleaning of high damage threshold fused silica".

With the development of modern optical technology, the problem of ultraviolet laser-induced damage to fused quartz components seriously restricts the development of high-power laser systems. At present, the contact polishing process inevitably produces defects and pollution, and it is difficult to completely remove them through post-treatment, greatly reducing the performance and lifespan of fused quartz components.

Principle and experimental schematic diagram of microsecond pulse CO2 laser cleaning
To this end, the research team revealed the modulation mechanism of defects and pollution on component damage performance through a multi-scale simulation method of macro micro nano scale. Through multimodal characterization of the distribution patterns of defects and contamination, it has been confirmed that laser cleaning can effectively eliminate and suppress surface/subsurface defects, absorption defects, chemical structural defects, and elemental contamination, without generating residual thermal stress and severely damaging the surface roughness of materials. The samples cleaned by laser showed a higher damage threshold compared to those processed by traditional processing techniques (mechanical chemical polishing, mechanical chemical polishing+magnetorheological polishing, mechanical chemical polishing+hydrofluoric acid etching). The damage threshold increased by 47.6% with a 0% probability and 27.0% with a 100% probability, respectively. The laser cleaning method proposed in this study provides a new approach for the low defect and clean manufacturing of fused quartz components.

The related work has received support from key research and development programs of the Ministry of Science and Technology, the National Natural Science Foundation of China, and the Shanghai Sailing Plan.

Source: Shanghai Institute of Optics and Mechanics

관련 추천
  • Atomstack leads the new track of intelligent laser engraving

    In today's rapidly developing technology, laser engraving technology is like a mysterious magician, constantly demonstrating amazing skills. In this field full of creativity and competition, Atomstack stands out with its outstanding technology and innovative spirit, becoming a leader in the new track.As the only enterprise in the semiconductor laser engraving machine industry with an annual shipme...

    2024-11-15
    번역 보기
  • Research has shown that patterns on crystals can double the optical sensitivity of photodetectors

    Scientists from the Institute of Automation and Control Process at the Far East Branch of the Russian Academy of Sciences described the changes on the surface of monocrystalline silicon during laser processing. The author of this study placed the crystal in a methanol solution and applied a laser pulse lasting one thousandth of a second to the sample, with a pulse count ranging from five to fifty ...

    2024-04-01
    번역 보기
  • Micro devices output powerful lasers at room temperature, reducing power consumption by 7 times

    Recently, researchers at the Rensselaer Polytechnic Institute in the United States have invented a miniature device thinner than human hair, which can help scientists explore the essence of light and matter and unravel the mysteries of the quantum field. The most important advantage of this technology is that it can work at room temperature without the need for complex infrastructure. The resea...

    2024-05-29
    번역 보기
  • LIS Technologies closes $11.88 million seed round of financing

    On August 19th, local time, LIS Technologies, a U.S.-based developer of laser uranium enrichment technology, announced the latest closing of an $11.88 million seed round of financing. According to reports, LIS Technologies is a company focused on developing advanced laser technology and is the only U.S.-based laser uranium enrichment company to hold a homegrown patent. The round attracted a numb...

    2024-08-22
    번역 보기
  • The 20th Wuhan Optoelectronics Expo 2025 to Open Grandly

    From May 15 to 17, 2025, the 20th Wuhan Optoelectronics Expo will be held grandly at the China Optics Valley Convention and Exhibition Center in Wuhan. With the theme "Light Connects Everything, Intelligence Leads the Future," this year's expo will focus on six major fields: laser technology and applications, optics and precision optics, information communication and semiconductors, automotive opt...

    03-14
    번역 보기