Nederlands

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

209
2024-07-23 11:31:18
Bekijk vertaling

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

Gerelateerde aanbevelingen
  • Researchers use liquid metal and laser ablation to create stretchable micro antennas

    Researchers have developed a new method of making micro stretchable antenna with water gel and liquid metal. These antennas can be used for wearable and flexible wireless electronic devices to provide links between devices and external systems for power transmission, data processing, and communication.Using our new manufacturing method, we have demonstrated that the length of liquid metal antennas...

    2023-09-19
    Bekijk vertaling
  • Optical Drive Magnetic Control: A Breakthrough in Memory Technology

    A recent study conducted by the Hebrew University suggests an undiscovered relationship between magnetism and light. This discovery may pave the way for extremely fast optical storage technology and creative optical magnetic sensor technology.It is expected that this discovery will completely change the way equipment is manufactured and data is stored in a range of fields.Amir Capua, Professor and...

    2024-01-06
    Bekijk vertaling
  • Renowned companies such as TRUMPF and Jenoptik participate in high-power laser projects in Germany

    High power laser diodes will be key components of future fusion power plants.Recently, the German Federal Ministry of Education and Research (BMBF) launched a new project called "DioHELIOS". The project will last for 3 years and is part of BMBF's "Fusion 2040" funding program, which aims to build the first nuclear fusion power plant in Germany by 2040.The project will last for three years and rece...

    2024-11-09
    Bekijk vertaling
  • The carbon dioxide laser market is expected to reach 7.1 billion US dollars by 2033

    The carbon dioxide laser market will show significant elasticity and sustained growth in the next decade, with a compound annual growth rate of 3.6% expected from 2023 to 2033.This impressive prediction indicates the persistent demand and expanding application of carbon dioxide lasers in various industries.By the end of 2033, the market is expected to reach a significant valuation of $7.1 billion,...

    2023-10-27
    Bekijk vertaling
  • High Power Laser Assists Scientists in Discovering a New Stage of High Density and Ultra High Temperature Ice

    As is well known, the outer planets of our solar system, Uranus and Neptune, are gas giants rich in water. The extreme pressure on these planets is 2 million times that of the Earth's atmosphere. Their interiors are also as hot as the surface of the sun. Under these conditions, water exhibits a strange high-density ice phase.Researchers have recently observed one of the stages, called Ice XIX, whi...

    2023-10-11
    Bekijk vertaling