日本語

Shanghai Optics and Fine Mechanics Institute has made progress in the new holographic imaging technology of frequency domain direct sampling

928
2025-03-20 11:16:50
翻訳を見る

Recently, a research team from the Aerospace Laser Technology and Systems Department of the Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, proposed a new holographic imaging technology using frequency domain direct sampling. The relevant results were published in Optics Letters under the title of "Fourier inspired single pixel holography".

Digital holography is a technique that uses interference to record information about the optical field. Among them, off-axis digital holography is widely used in imaging, measurement, display, storage and other fields due to its ability to eliminate the influence of twin images in principle. Traditional off-axis digital holography uses an array detector to record holograms, and then selects the frequency spectrum related to the target light field. This imaging method records both the target image and redundant zero order images and twin images. In addition, due to the difficulty in preparing wide spectrum, high sensitivity, and high spatiotemporal resolution area array detectors, off-axis digital holography technology is also difficult to apply under extreme conditions such as special bands and low light.

This study is based on the mechanism of off-axis holography to separate redundant information in the spectral domain, combined with the characteristic of Fourier single pixel imaging technology that can obtain object spectra on demand. The hologram is encoded using a specific frequency stripe pattern, and the Fourier spectrum of the target light field is directly sampled by a high-sensitivity single pixel detector. Finally, the target light field information is obtained through inverse Fourier transform (Figure 1a, b). In addition, the research team intelligently designed encoding patterns and image enhancement models based on self coding architecture (Figure 1c), and used transfer learning techniques to reduce the required experimental data volume (Figure 1d). In the end, the research team successfully achieved imaging of phase type objects at a maximum sampling rate of 7.5% (Figure 2). This study combines holography, correlation imaging, and artificial intelligence organically, providing new ideas for efficient phase detection in special bands and low light conditions. It is expected to be applied in fields such as scattering imaging and low light imaging.

Figure 1. (a) Off axis hologram generation process; (b) The process of modulating off-axis holograms using learned mask selection patterns and reconstructing objects; (c) The joint optimization network structure used for pre training; (d) Fine tuning process using experimental data.

Figure 2. (a) Experimental setup diagram; (b) The original experimental results at different sampling rates and the experimental results processed by neural networks; (c) Phase truth, phase comparison of network input and network output objects at a sampling rate of 7.5%.

Source: opticsky

関連のおすすめ
  • MKS Instruments will build a factory in Malaysia

    Recently, American semiconductor equipment manufacturer MKS Instruments announced plans to build a factory in Penang, Malaysia to support the production of wafer manufacturing equipment in the region and globally. This development plan will be divided into three stages to build a new factory, and it is expected to break ground and start construction in early 2025.Why choose to build a factory in M...

    2024-06-26
    翻訳を見る
  • SILICON AUSTRIA LABS and EV GROUP Strengthen Cooperation in Optical Technology Research

    EV Group, a leading supplier of wafer bonding and lithography equipment for the MEMS, nanotechnology, and semiconductor markets, and Silicon Austria Labs, a leading electronic systems research center in Austria, announced that SAL has received and installed multiple EVG lithography and photoresist processing systems in its MicroFab at the R&D cleanroom facility in Filach, Austria.These devices...

    2023-11-15
    翻訳を見る
  • Narrow band tunable terahertz lasers may change material research and technology

    A group of researchers from the Max Planck Institute for Material Structure and Dynamics in Germany explored the effect of manipulating the properties of quantum materials far from equilibrium through customized laser drivers. They found a more effective method to create previously observed metastable superconducting states in fullerene based materials using lasers.By tuning the light source to 10...

    2023-11-21
    翻訳を見る
  • Tianjin University's Photoacoustic Remote Sensing Microscopy Technology Breakthrough New Heights

    Recently, Professor Tian Zhen's team from Tianjin University has made a breakthrough in the field of photoacoustic remote sensing microscopy technology and successfully developed a new type of non-destructive testing method. This technology uses Kaplin high-power femtosecond laser as the key light source, further optimizing the solution to the internal flaw detection limitations of inverted chips,...

    2024-04-16
    翻訳を見る
  • Researchers have manufactured chip based optical resonators that can operate in the ultraviolet (UV) and visible light regions of the spectrum

    Figure: Researchers have created a chip based ring resonator that operates in the ultraviolet and visible light ranges and exhibits record low UV loss. The resonator (small circle in the middle) is displayed as blue light.Researchers have created chip based photonic resonators that can operate in the ultraviolet (UV) and visible regions of the spectrum and exhibit record low UV loss. The ne...

    2023-10-06
    翻訳を見る