Novel snapshot hyperspectral imager based on diffractive elements

被引:2
|
作者
Hahn, R. [1 ]
Goerres, J. [1 ]
Haist, T. [1 ]
Osten, W. [1 ]
Reichelt, S. [1 ]
机构
[1] Univ Stuttgart, Inst Tech Opt, Pfaffenwaldring 9, D-70569 Stuttgart, Germany
来源
关键词
hyperspectral imaging; snapshot; diffractive optics; surface metrology; confocal microscopy;
D O I
10.1117/12.2621521
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
We present a novel approach for hyperspectral snapshot imaging. Compared to methods containing Fabry-Perot or absorption filters on each of the sensors pixels our approach relies on diffractive optics. The sensor can be realized in a particularly cost-effective and simple way. Another advantage is the possibility of a flexible adaptation to the respective measurement task. The spatio-spectral resolution and also the spectral measuring range can be adjusted and even varied over the sensor. Therefore, it becomes possible to measure certain parts of the scene with high spatial resolution and other parts with high spectral resolution or a different wavelength range. In initial tests, the system was able to detect spectral shifts of less than two 0.5 nm, within a measuring range of 190 nm. Besides potential applications in medicine or agriculture, the system can also be used in surface metrology. For this purpose, we present the realization of an area-based snapshot chromatic confocal sensor, which can perform 2.5D measurements with only one image acquisition.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] ALTIUS atmospheric limb sounding mission, a novel hyperspectral imager
    Saillen, N.
    Aballea, L.
    Petitjean, G.
    Buhler, D.
    Montrone, L.
    Reyes, D. Navarro
    Francois, M.
    Mollet, D.
    Creemers, M.
    De Smet, J.
    Pollier, C.
    Naudet, J.
    Famelear, A.
    SENSORS, SYSTEMS, AND NEXT-GENERATION SATELLITES XXVII, 2023, 12729
  • [32] Hyperspectral fundus imager
    Truitt, PW
    Soliz, P
    Meigs, AD
    Otten, LJ
    IMAGING SPECTROMETRY VI, 2000, 4132 : 356 - 364
  • [33] Snapshot hyperspectral imaging based on equalization designed DOE
    Xu, Nan
    Xu, Hao
    Chen, Shiqi
    Hu, Haiquan
    Xu, Zhihai
    Feng, Huajun
    Li, Qi
    Jiang, Tingting
    Chen, Yueting
    OPTICS EXPRESS, 2023, 31 (12) : 20489 - 20504
  • [34] Spectral Calibration of the Hyperspectral Imager Based on Atmosphere Absorption
    Zhang Chun-lei
    Xiang Yang
    SPECTROSCOPY AND SPECTRAL ANALYSIS, 2012, 32 (01) : 268 - 272
  • [35] Probe-Based Hyperspectral Imager for Crop Monitoring
    Antony, Maria Merin
    Sandeep, C. S. Suchand
    Matham, Murukeshan Vadakke
    SPIE FUTURE SENSING TECHNOLOGIES (2020), 2020, 11525
  • [36] Freeform based hYperspectral imager for MOisture Sensing (FYMOS)
    Graham, Christopher
    Girkin, John M.
    Bourgenot, Cyril
    OPTICS EXPRESS, 2021, 29 (11) : 16007 - 16018
  • [37] MEMS FPI-based smartphone hyperspectral imager
    Rissanen, Anna
    Saari, Heikki
    Rainio, Kari
    Stuns, Ingmar
    Viherkanto, Kai
    Holmlund, Christer
    Nakki, Ismo
    Ojanen, Harri
    NEXT-GENERATION SPECTROSCOPIC TECHNOLOGIES IX, 2016, 9855
  • [38] Spectral calibration for the hyperspectral imager based on the doped panel
    Zhou, Jiankang
    Ji, Yiqun
    Chen, Yuheng
    Chen, Xinhua
    Shen, Weimin
    2011 INTERNATIONAL CONFERENCE ON OPTICAL INSTRUMENTS AND TECHNOLOGY: OPTOELECTRONIC MEASUREMENT TECHNOLOGY AND SYSTEMS, 2011, 8201
  • [39] Design of miniaturization hyperspectral imager based on CMOS sensor
    Yang, Lei
    Zhou, Jinsong
    Jing, Juanjuan
    Wei, Lidong
    He, Xiaoying
    Li, Yacan
    Feng, Lei
    Xu, Li
    Nie, Boyang
    SENSORS, SYSTEMS, AND NEXTGENERATION SATELLITES XXIII, 2019, 11151
  • [40] Multishot hyperspectral imaging based on tunable diffractive lenses
    Hu, Haiquan
    Xu, Hao
    Xu, Zhihai
    Li, Qi
    Feng, Huajun
    Chen, Yueting
    OPTICAL ENGINEERING, 2024, 63 (09)