Nederlands

Progress in Calibration of Large Aperture Diffractive Lenses in the High Power Laser Physics Joint Laboratory of Shanghai Institute of Optics and Mechanics

377
2023-10-14 10:22:56
Bekijk vertaling

Recently, the High Power Laser Physics Joint Laboratory of Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, proposed a single exposure interferometric calibration method for large aperture diffractive lenses, which provides strong support for the engineering application of large aperture diffractive lenses. The relevant achievements are published in Optics Letters as "Absolute measurement of focusing properties of a large aperture diffractive lens".

Compared to reflective focusing lenses, diffractive optical elements are designed flexibly, have a large aperture, are lightweight, suitable for various wavebands, and can achieve complex optical functions. Photonic sieves and zone plates are typical representatives of diffractive lenses. Considering that diffraction elements are composed of a large number of microstructures, deviations are inevitable during the machining process, so performance calibration is necessary before use.

In this study, researchers used the natural background light of a large aperture diffractive lens as a reference and entered the shear interference system together with the focused beam. Based on the interference pattern recorded by the detector, the wavefront gradient of the focused beam relative to the background light is first obtained using Fourier analysis, and then the transmitted wavefront is reconstructed using the mode method. Finally, the focal length and focal spot morphology of the diffractive lens are numerically calculated. The experimental results of a 210mm aperture diffractive lens meet theoretical expectations. Ultra large aperture zone plates and photon sieves can be used for space interferometric telescopes. The self supporting beam splitting photon sieve is suitable for focusing imaging of EUV and soft X-ray. Multi focal photon sieves can be used for X-ray interference diagnosis of plasma.

This work was supported by the National Natural Science Foundation of China and the Chinese Academy of Sciences' pilot A program.

Figure 1. Measurement Optical Path of Large Aperture Diffractive Lens

Figure 2. Experimental results of self-developed shear interferometer and measurement

Source: Shanghai Institute of Optics and Mechanics

Gerelateerde aanbevelingen
  • New insights into the interaction between femtosecond laser and living tissue

    The N-linear optical microscope has completely changed our ability to observe and understand complex biological processes. However, light can also harm organisms. However, little is known about the mechanisms behind the irreversible disturbances of strong light on cellular processes.To address this gap, the research teams of Hanieh Fattahi and Daniel Wehner from the Max Planck Institute for Photos...

    2024-06-07
    Bekijk vertaling
  • American FMCW LiDAR listed company Aeva receives $50 million investment

    Recently, American FMCW LiDAR listed company Aeva announced a strategic partnership with a technology subsidiary of a Fortune Global 500 company to jointly introduce Aeva's fourth generation 4D LiDAR into emerging industrial and consumer markets.According to the agreement, the tech giant will provide a strategic investment of approximately $50 million to Aeva through subscription of Aeva common st...

    05-22
    Bekijk vertaling
  • Coherent Unifies Ultrafast Laser Business at the Glasgow Center of Excellence

    Recently, Coherent, an American laser system solution provider, announced that all of the company's ultra fast laser business, including the manufacturing of all picosecond and femtosecond lasers, will be unified in one place: the Ultra Fast Center of Excellence in Glasgow, Scotland.Previously, Coherent's Ultra Fast Center of Excellence located in Glasgow was already a state-of-the-art mass produc...

    2023-09-22
    Bekijk vertaling
  • Shanghai Microsystems Institute has developed a high-speed photon detector with distinguishable photon numbers

    Recently, Li Hao and You Lixing's team from the Chinese Academy of Sciences Shanghai Institute of Microsystems and Information Technology developed an ultrahigh speed, photon number resolvable optical quantum detector with a maximum count rate of 5GHz and a photon number resolution of 61 by using the sandwich structure superconducting nanowires and multi wires working in parallel. The related rese...

    2024-07-12
    Bekijk vertaling
  • China University of Science and Technology proposes composite cold field 3D printing technology for liquid crystal elastomers

    Recently, Associate Professor Li Mujun from the School of Engineering Sciences and the Institute of Humanoid Robotics at the University of Science and Technology of China, together with researchers such as Professor Zhang Shiwu, has made significant progress in the field of intelligent material 3D printing. The research team proposed composite cold field 3D printing technology and successfully pre...

    02-25
    Bekijk vertaling