日本語

Shanghai Institute of Optics and Fine Mechanics has made progress in the research of interferometer wavefront calibration methods

530
2024-07-23 11:31:18
翻訳を見る

Recently, the research team of the High end Optoelectronic Equipment Department at the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, has made progress in the study of wavefront calibration methods for interferometer testing. The relevant research results were published in Optics Express under the title of "High precision wavefront correction method ininterometer testing".

High precision optical components have been fully applied in fields such as laser technology, optical communication, medical imaging, astronomy and space exploration, semiconductor manufacturing, and scientific research. The use of interferometers is currently the main method for high-precision optical detection. In order to obtain the true surface shape error of the test component, the wavefront calibration method must be used to calibrate the wavefront error of the interferometer test. However, there is currently no complete method for wavefront calibration in optical processing.

Figure 1. Ring error generation

 


Figure 2. Results of Ring Error Repair

In this work, the research team proposed a new high-precision optical surface wavefront correction method to address the difference between wavefront error in Fizeau interferometer testing and actual surface error. The main content includes fitting optical surface function parameters, correcting lateral distortion, eliminating misalignment errors, and calculating concave surface errors. And the error of this method was analyzed in depth from the aspects of function parameter fitting, ray tracing, interpolation, etc. The wavefront calibration of the off-axis parabolic mirror in the zero position test configuration proves the effectiveness of this method. The results showed that the circular error generated by the experiment was significantly reduced, and the off-axis error increased from 0.23 λ to 0.05 λ (λ=632.8nm). The PV deviation from the non spherical surface exceeded 8.5mm. This study is of great significance in the high-precision optical component detection process.

Source: Shanghai Institute of Optics and Fine Mechanics

関連のおすすめ
  • Germany's leading optoelectronics industry (Jenoptik) in the first half of the gold over 4.2 billion

    On August 9, local time, Germany's leading optoelectronics company Jenoptik released its 2024 second quarter interim financial results forecast. The financial data show that the company in the challenging market environment still shows strong growth momentum.In the first half of the year, Jenoptik achieved significant growth in revenue and earnings before interest, taxes, depreciation and amortiza...

    2024-08-15
    翻訳を見る
  • 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
    翻訳を見る
  • Construction of Advanced New Laser Research Centers in American Universities

    The ATLAS R&D center is expected to be completed by mid-2026!A powerful new laser research facility located on the Foothills campus of Colorado State University will begin construction this month. The facility is planned to be put into use in mid-2026 and is the result of 40 years of laser development research at Colorado State University. It is a collaboration with the Fusion Energy Science P...

    2024-10-30
    翻訳を見る
  • BWT's 3000W product speed surges by 200%

    In the era of speed and precision, the field of thin and medium plate processing is experiencing a revolutionary transformation. Today, let's explore a remarkably fast tool -- BWT’s Lightning 3000W@34μm fiber laser, and witness its impressive performance.On busy production lines, this product is completing complex cutting tasks at astonishing speeds. Its high-speed, high-efficiency, and high-quali...

    05-12
    翻訳を見る
  • Significant progress made in 808nm high-power semiconductor laser chips

    The R&D team of Xi'an Lixin Optoelectronics Technology Co., Ltd. (hereinafter referred to as "Lixin Optoelectronics") has made significant progress in 808nm high-power semiconductor laser chips through continuous technological breakthroughs.808nm semiconductor laser, as an ideal and efficient solid-state laser pump source, plays an important role in advanced manufacturing, mechanical processin...

    2024-06-14
    翻訳を見る