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Mid-infrared single-pixel imaging via two-photon optical encoding

  • Huijie Ma
  • , Kun Huang*
  • , Jianan Fang
  • , Ziyu He
  • , Yan Liang
  • , Heping Zeng
  • *此作品的通讯作者
  • East China Normal University
  • Shanxi University
  • University of Shanghai for Science and Technology
  • Shanghai Research Center for Quantum Sciences
  • Guangyang Bay Laboratory

科研成果: 期刊稿件文章同行评审

摘要

Mid-infrared (MIR) imaging offers powerful capabilities for label-free chemical analysis, yet its practical deployment remains hindered by the high cost and cryogenic complexity of conventional cameras. Two-photon absorption (TPA) provides a promising route to room-temperature MIR detection, but existing TPA imagers based on raster scanning or array detectors are constrained by slow acquisition speed or limited detection sensitivity. Here we present a scanning-free MIR single-pixel imaging approach based on non-degenerate TPA in a silicon detector. The involved spatial encoding is realized by a near-infrared structured pump with a resolution of 7 μm, thus allowing high-fidelity MIR optical modulation through the phase-matching-free nonlinear interaction. Consequently, the spatially modulated TPA response is intrinsically integrated in the single-element photodetector, which favors computational reconstruction of the impinging MIR image by correlating measured intensities and predetermined patterns. Notably, the use of advanced algorithms of compressed sensing and deep learning facilitate image recovery under sub-Nyquist sampling with a compression ratio of 10% and photon-starved illumination with an incident light flux of 0.5 pJ/pulse. Furthermore, a multispectral imaging over 2.5-3.8 μm is manifested for chemical discrimination of plastic films. The presented architecture would offer a broadband and sensitive alternative for MIR imaging in various fields ranging from biomedical diagnostics to material inspection.

源语言英语
期刊论文编号34
期刊PhotoniX
6
1
DOI
出版状态已出版 - 12月 2025

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