Türkçe

A new type of all-optical intelligent spectrometer

206
2024-07-22 11:54:26
Çeviriyi gör

Recently, Professor Xu Tingfa's research team from the School of Optoelectronics at Beijing Institute of Technology and Assistant Professor Lin Xing's team from Tsinghua University jointly developed a new type of Opto Intelligence Spectrometer (OIS). The device is based on diffractive neural network technology and achieves precise spectral reconstruction under spatially coherent or spatially incoherent light sources, with significant advantages of low energy consumption and light speed processing. The relevant achievements have been published under the title "Opto intelligence Spectrometer Using Diffractive Neural Networks" in the top international optical journal "Nanophotonics" (China University of Science and Technology, Class 1, Top Journal).

Nanophotonics, published by Walter de Gruyter in Germany, focuses on exploring cutting-edge advances in the interaction between light and matter, as well as their fundamental principles and applications. The first authors of this paper are Wang Ze, a master's student at Beijing Institute of Technology, and Chen Hang, a postdoctoral fellow at Tsinghua University. The corresponding authors are Associate Researcher Li Jianan, Professor Xu Tingfa, and Assistant Professor Lin Xing.

The newly developed all optical intelligent spectrometer (OIS) converts the spectral amplitude of the input light source into the detection intensity on the output plane, and uses multiple detectors to accurately perceive the intensity of different spectral bands. By establishing a mapping relationship between input and output and optimizing the phase distribution of the modulation layer using two mean square error (MSE) loss functions, high contrast output intensity distribution and accurate reconstruction of the input light source spectrum were achieved. The principle is shown in Figure 1.

Figure 1. Architecture of all-optical intelligent spectrometer based on diffractive neural network.

The experimental results show that OIS exhibits excellent spectral reconstruction capability under both spatially coherent and spatially incoherent light sources (see Figure 2). In addition, the application testing of the device on the real-world dataset CAVE shows that it has good generalization ability and practical application potential (see Figure 3).

Figure 2. OIS spectral reconstruction results with a spectral resolution of 10nm. Left image: Randomly generated spectral amplitude distribution and spectral reconstruction results. Right figure: Intensity distribution of the output plane.

Figure 3. Spectral reconstruction results of OIS on the real-world dataset CAVE, with a spectral resolution of 10nm.
This study has overcome the long-standing challenges of traditional spectral reconstruction architectures, such as bulky optical components, complex electronic reconstruction algorithms, and limited flexibility. It can serve as a basic unit for array layout, laying the foundation for full light speed and high-quality spectral imaging.

Source: Beijing Institute of Technology

İlgili öneriler
  • Danish scientists have created solar cells based on selenium using a new laser annealing technique

    A team of scientists at the Technical University of Denmark has created a selene-based solar cell by replacing thermal annealing with a new laser annealing strategy."In our work, we investigated the potential of this laser annealing strategy specifically for selenium thin film solar cells, and we report a new world record for fill factor, a new world record for ideal factor, and the most advanced ...

    2023-09-06
    Çeviriyi gör
  • Researchers Obtaining Scientific Returns from Raman Spectroscopy for External Bioexploration Using Lasers

    We investigated the potential of laser selection in a wide optical range from ultraviolet to visible light, and then to infrared (excitation wavelengths of 325, 532, 785, and 1064 nm), in order to combine and analyze extreme microorganisms related to Earth (such as Cryptomeria elegans, cold floating nematodes, and circular green algae), carbon water compound molecules, as well as simulated mineral...

    2023-10-23
    Çeviriyi gör
  • Samsung and SK Hynix Explore Laser Debonding Technology

    According to South Korean media etnews, Samsung Electronics and SK Hynix have started the process technology conversion of high bandwidth memory (HBM) wafers, with the introduction of new technologies to prevent wafer warping as the core, which is considered to be aimed at the next generation HBM. It is expected that with the process transformation, the material and equipment supply chain will als...

    2024-07-16
    Çeviriyi gör
  • Leica Measurement System Development First Person Laser Scanner

    Leica Geosystems, a subsidiary of Hexagon, has developed Leica BLK2GO PULSE, its first person laser scanner, which combines LiDAR sensor technology with the original Leica BLK2GO shape. The technology will be released in early 2024.The scanner provides users with a fast, simple, and intuitive first person scanning method that can be controlled through a smartphone and provides real-time full color...

    2023-10-19
    Çeviriyi gör
  • Patterned waveguide enhanced signal amplification within perovskite nanosheets

    Researchers at Busan National University, led by Kwangseuk Kyhm, Professor of Ultra Fast Quantum Optoelectronics from the Department of Optics and Mechatronics, are enhancing signal amplification inside cesium bromide lead perovskite nanosheets through patterned waveguides.Perovskite is a highly attractive material in solar cell applications, but its nanostructure is now being explored as a new la...

    2024-01-10
    Çeviriyi gör