Ελληνικά

Unsupervised physical neural network empowers stacked imaging denoising algorithm

902
2025-03-25 15:23:55
Δείτε τη μετάφραση

In view of the reconstruction problem of stack imaging technology in noisy environment, Lin Nan's team from Shanghai Institute of Optics and Mechanics, Chinese Academy of Sciences, proposed an innovative method ProPtyNet based on unsupervised physical neural network, which is expected to be applied to chip CD measurement and defect detection. The article was published in Optics and lasers in engineering under the title of "Noise robust photography using unsupervised natural network".
Its core innovations and achievements are as follows:

1. Core issues and challenges
Stacked imaging uses diffraction patterns to invert the complex amplitude distribution of objects, but faces challenges in the following scenarios:
Complex noise environment: Poisson noise (signal-to-noise ratio 24.64dB) under low light conditions and mixed noise caused by random high-energy particles can lead to the failure of traditional algorithms
Dynamic bandwidth imaging: Non monochromatic light sources make non target wavelengths a new frequency domain noise source
Hardware limitations: Traditional iterative algorithms are slow and difficult to achieve fast imaging.

2. Method innovation
Propose a dual driven framework of "physical model+deep learning"
Data processing architecture: Zero padding preprocessing (e.g. 512 → 612 pixels) and four component output (amplitude/phase x object/probe) are used to improve axial resolution
Network topology optimization: Customize U-net architecture (with only 2.5 million parameters) to achieve four-dimensional parameter joint optimization, and extend the dynamic range of the "Conv2d tanh" phase layer to 2 π
Anti noise loss function: pioneering a dual loss mechanism (β=0.85-0.95) to balance overexposed areas (γ=1 → 0.1 gradient) and probe structured constraints, resulting in a 5-fold decrease in loss function

3. Experimental verification
Verify performance through 600 sets of tests:
Noise robustness: Under mixed noise (SNR 30dB), the SSIM value reaches 0.92 ± 0.03, which is about 14 times higher than ePIE
Speed advantage: The single convergence time is 729 seconds, which is 47.8% and 31.9% faster than AD and ePIE, respectively
Wide spectral adaptability: effectively separates ± 5nm noise components in the 405nm band, achieving a resolution of 57 line pairs/mm

4. Application prospects
Extreme Ultraviolet EUV Imaging: The method has been adapted to the Fresnel propagation model and can be extended to a wavelength of 13.5nm
Low dose dynamic monitoring: Effective suppression of readout noise under 300 μ s short exposure conditions (NPS=0.12)
Multi parameter joint calibration: achieving joint calibration along the axis (zPIE) and oblique incidence (aPIE) by adding output channels [35-36]
This study provides a breakthrough in both computer principles and experimental models for coherent imaging of new light sources (X-ray/EUV) and extreme operating conditions (low temperature/irradiation).


Figure 1. ProPtyNet algorithm details. (a) ProPtyNet network flowchart. (b) Details of U-net network architecture. (c) Data preprocessing and post-processing methods.


Figure 2. Simulation reconstruction results. (a) The true amplitude and phase of objects and probes. (b) The reconstruction results of ProPtyNet, ePIE, rPIE, and AD algorithms under Poisson noise, Gaussian noise, and mixed noise.


Figure 3. Experimental results. (a) The reconstruction results of sample amplitude information under different noise environments. (b) Comparison of amplitude cross-sections in the underlined section. (c) Comparison of loss functions in the iterative process.


Figure 4. Reconstruction results under broad-spectrum illumination (a) Experimental illumination light spectrum. (b) Simulation and experimental results.

Source: opticsky

Σχετικές προτάσεις
  • Research has found that inorganic perovskite materials are easy to prepare and process, making them suitable for manufacturing lasers

    According to research from Busan National University, inorganic perovskite materials are easy to prepare and process, making them suitable for manufacturing lasers.The perovskite of interest is CsPbBr3, which must form "nanosheets" within the specific structure invented by the Busan team to obtain sufficient laser gain.It is not that the laser has been achieved, as the research project aims to cha...

    2024-01-04
    Δείτε τη μετάφραση
  • FGI utilizes Fraunhofer's LiDAR technology for maritime surveying

    The highly respected Finnish Institute of Geospatial Studies will utilize the advanced LiDAR system developed by the Fraunhofer Institute of Physical Measurement Technology for future ocean surface surveys. Significant progress is expected in data quality and on-site measurement efficiency, and the state-owned research department is collaborating with Fraunhofer IPM on a joint project. They are jo...

    2024-02-14
    Δείτε τη μετάφραση
  • 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
    Δείτε τη μετάφραση
  • Dutch satellite instruments have achieved milestone achievements in transmitting laser data to Earth

    TNO wrote that this is the first time Dutch technology has been used to send data from a satellite to a ground station press release on Earth. This technology uses invisible laser signals to achieve faster and safer data flow compared to ubiquitous communication radio frequencies.Kees Buijsrogge, Director of TNO Space, said, "This critical milestone marks a significant achievement for the Netherla...

    2024-01-25
    Δείτε τη μετάφραση
  • Application of Airborne Lidar Calibration Board in Various Fields

    With the rapid development of technology, airborne LiDAR technology has become one of the key technologies in modern surveying, remote sensing, navigation and other fields. As an important component of this technology, the airborne LiDAR calibration board plays a crucial role in ensuring the accuracy and stability of the radar system. This article will explore the application and importance of air...

    2024-04-08
    Δείτε τη μετάφραση