• Acta Photonica Sinica
  • Vol. 52, Issue 1, 0111001 (2023)
Qifan ZHU1,2, Yi CAI1,2, Xuanke ZENG1,2, Hu LONG1,2..., Yongle ZHU1,2, Liangwei ZENG1,2, Jingzhen LI1,2,* and Xiaowei LU1,2,**|Show fewer author(s)
Author Affiliations
  • 1Shenzhen Key Laboratory of Micro-nano Photonic Information Technology,College of Physics and Optoelectronic Engineering,Shenzhen University,Shenzhen 518060,China
  • 2Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong,College of Physics and Optoelectronic Engineering,Shenzhen University,Shenzhen 518060,China
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    DOI: 10.3788/gzxb20235201.0111001 Cite this Article
    Qifan ZHU, Yi CAI, Xuanke ZENG, Hu LONG, Yongle ZHU, Liangwei ZENG, Jingzhen LI, Xiaowei LU. Bionic Ultrafast Imaging for Multi-FOV and Wide Time Range[J]. Acta Photonica Sinica, 2023, 52(1): 0111001 Copy Citation Text show less
    References

    [1] C WONG, R ALVEY, D TURNER et al. Electronic coherence lineshapes reveal hidden excitonic correlations in photosynthetic light harvesting. Nature Chemistry, 4, 396-404(2012).

    [2] J BERT, E PROST, I TUTUNNIKOV et al. Optical imaging of coherent molecular rotors. Laser & Photonics Reviews, 14, 1900344(2020).

    [3] M HASSAN, T LUU, A MOULET et al. Optical attosecond pulses and tracking the nonlinear response of bound electrons. Nature, 530, 66-70(2016).

    [4] D VILLENEUVE. Attosecond science. Contemporary Physics, 59, 47-61(2018).

    [5] K RÖTTGER, S WANG, F RENTH et al. A femtosecond pump-probe spectrometer for dynamics in transmissive polymer films. Applied Physics B, 118, 185-193(2014).

    [6] Bin ZHANG, Lei WANG, Yuechen JIA et al. Research advances of optical waveguides by light-manipulation based femtosecond laser writing(invited). Acta Photonica Sinica, 51, 0151106(2022).

    [7] Tianqi CHEN, Jian YANG, Tianqing JIA. A Study on ablation quality of silicon by femtosecond laser pulse trains. Acta Photonica Sinica, 50, 0650112(2021).

    [8] K NAKAGAWA, A IWASAKI, Y OISHI et al. Sequentially timed all-optical mapping photography (STAMP). Nature Photonics, 8, 695-700(2014).

    [9] T SUZUKI, F ISA, L FUJII et al. Sequentially timed all-optical mapping photography (STAMP) utilizing spectral filtering. Optics Express, 23, 30512-30522(2015).

    [10] T SUZUKI, R HIDA, Y YAMAGUCHI et al. Single-shot 25-frame burst imaging of ultrafast phase transition of Ge2Sb2Te5 with a sub-picosecond resolution. Applied Physics Express, 10, 092502(2017).

    [11] H NEMOTO, T SUZUKI, F KANNARI. Single-shot ultrafast burst imaging using an integral field spectroscope with a microlens array. Optics Letters, 45, 5004-5007(2020).

    [12] Y YAO, Y HE, D QI et al. Single-shot real-time ultrafast imaging of femtosecond laser fabrication. ACS Photonics, 8, 738-744(2021).

    [13] Y ZHU, X ZENG, Y CAI et al. All-optical high spatial-temporal resolution photography with raster principle at 2 trillion frames per second. Optics Express, 29, 27298-27308(2021).

    [14] S YEOLA, D KUK, K KIM. Single-shot ultrafast imaging via spatiotemporal division of femtosecond laser pulses. Journal of the Optical Society of America B, 35, 2822-2827(2018).

    [15] X ZENG, S ZHENG, Y CAI et al. High-spatial-resolution ultrafast framing imaging at 15 trillion frames per second by optical parametric amplification. Advanced Photonics, 2, 056002(2020).

    [16] L GAO, J LIANG, C LI et al. Single-shot compressed ultrafast photography at one hundred billion frames per second. Nature, 516, 74-77(2014).

    [17] P WANG, J LIANG, L V WANG. Single-shot ultrafast imaging attaining 70 trillion frames per second. Nature Commounications, 11, 2091-2099(2020).

    [18] G WEINBERG, O KATZ. 100,000 frames-per-second compressive imaging with a conventional rolling-shutter camera by random point-spread-function engineering. Optics Express, 28, 30616-30625(2020).

    [19] Ailin LIU, Jingjin ZHANG, Baoping GUO et al. Application of compressed sensing in the streak camera imaging. Acta Photonica Sinica, 47, 0525001(2018).

    [20] M NUSS, M LI, T CHIU et al. Time-to-space mapping of femtosecond pulses. Optics Letters, 19, 664-666(1994).

    [21] Z LIU, G STECKMAN, D PSALTIS. Holographic recording of fast phenomena. Applied Physics Letters, 80, 731-733(2002).

    [22] M CENTURION, D PAISLEY, Y PU et al. Femtosecond holography, 5580, 529-534(2005).

    [23] H HUANG, Z CHENG, Y YANG et al. Single-shot ultrafast sequential holographic imaging with high temporal resolution and a large field of view. Optics Letters, 44, 4885-4888(2019).

    [24] J MOON, S YOON, Y LIM et al. Single-shot imaging of microscopic dynamic scenes at 5 THz frame rates by time and spatial frequency multiplexing. Optics Express, 28, 4463-4474(2020).

    [25] A EHN, J BOOD, Z LI et al. FRAME: femtosecond videography for atomic and molecular dynamics. Light Science and Application, 6, e17045(2017).

    Qifan ZHU, Yi CAI, Xuanke ZENG, Hu LONG, Yongle ZHU, Liangwei ZENG, Jingzhen LI, Xiaowei LU. Bionic Ultrafast Imaging for Multi-FOV and Wide Time Range[J]. Acta Photonica Sinica, 2023, 52(1): 0111001
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