• Advanced Photonics
  • Vol. 7, Issue 2, 026004 (2025)
Yingming Xu1,2,†, Chengzhi Jin3,4, Liangze Pan5, Yu He3..., Yunhua Yao3, Dalong Qi3,*, Cheng Liu2,*, Junhui Shi1,*, Zhenrong Sun3, Shian Zhang3 and Jianqiang Zhu2|Show fewer author(s)
Author Affiliations
  • 1Research Center for Novel Computational Sensing and Intelligent Processing, Zhejiang Lab, Hangzhou, China
  • 2Chinese Academy of Sciences, Shanghai Institute of Optics and Fine Mechanics, Key Laboratory of High Power Laser and Physics, Shanghai, China
  • 3East China Normal University, School of Physics and Electronic Science, State Key Laboratory of Precision Spectroscopy, Shanghai, China
  • 4South-Central Minzu University, College of Electronics and Information Engineering, Wuhan, China
  • 5China Jiliang University, College of Optical and Electronic Technology, Hangzhou, China
  • show less
    DOI: 10.1117/1.AP.7.2.026004 Cite this Article Set citation alerts
    Yingming Xu, Chengzhi Jin, Liangze Pan, Yu He, Yunhua Yao, Dalong Qi, Cheng Liu, Junhui Shi, Zhenrong Sun, Shian Zhang, Jianqiang Zhu, "Single-shot spatial-temporal-spectral complex amplitude imaging via wavelength-time multiplexing," Adv. Photon. 7, 026004 (2025) Copy Citation Text show less

    Abstract

    Single-shot ultrafast multidimensional optical imaging (UMOI) combines ultrahigh temporal resolution with multidimensional imaging capabilities in a snapshot, making it an essential tool for real-time detection and analysis of ultrafast scenes. However, current single-shot UMOI techniques cannot simultaneously capture the spatial-temporal-spectral complex amplitude information, hampering it from complete analyses of ultrafast scenes. To address this issue, we propose a single-shot spatial-temporal-spectral complex amplitude imaging (STS-CAI) technique using wavelength and time multiplexing. By employing precise modulation of a broadband pulse via an encoding plate in coherent diffraction imaging and spatial-temporal shearing through a wide-open-slit streak camera, dual-mode multiplexing image reconstruction of wavelength and time is achieved, which significantly enhances the efficiency of information acquisition. Experimentally, a custom-built STS-CAI apparatus precisely measures the spatiotemporal characteristics of picosecond spatiotemporally chirped and spatial vortex pulses, respectively. STS-CAI demonstrates both ultrahigh temporal resolution and robust phase sensitivity. Prospectively, this technique is valuable for spatiotemporal coupling measurements of large-aperture ultrashort pulses and offers promising applications in both fundamental research and applied sciences.
    φmn(x,y,tm,λn)=I(Emn(x,y,tm,λn),LSE),

    View in Article

    Mmn(x,y,tm,λn)=φmn(x,y,tm,λn)Tn(x,y,tm,λn).

    View in Article

    ψmn(X,Ym,tm,λn)=RYm(I(Mmn(x,y,tm,λn),LES)),

    View in Article

    ψmn(X,Ym,tm,λn)=I(X,Y)m=1,n=1M,N|ψmn(X,Ym,tm,λn)|2ψmn(X,Ym,tm,λn).

    View in Article

    φmn(x,y,tm,λn)=φmn+αTn*max(Tn*Tn)(MmnMmn),

    View in Article

    Fmn(u,v,tm,λn)=Hmn(uamn,vbmn,tm,λn)Fmn(u,v,tm,λn),

    View in Article

    Error=sum(|I(X,Y)n,mN,M|ψmn(X,Ym,tm,λn)|2|)sum(I(X,Y)).

    View in Article

    E(x,y,t)=12πE(x,y,w)eiwtdw,

    View in Article

    Yingming Xu, Chengzhi Jin, Liangze Pan, Yu He, Yunhua Yao, Dalong Qi, Cheng Liu, Junhui Shi, Zhenrong Sun, Shian Zhang, Jianqiang Zhu, "Single-shot spatial-temporal-spectral complex amplitude imaging via wavelength-time multiplexing," Adv. Photon. 7, 026004 (2025)
    Download Citation