• Acta Optica Sinica
  • Vol. 34, Issue 8, 828002 (2014)
Lu Zhiyong1、2、*, Sun Jianfeng1, Zhi Ya′nan1, Zhou Yu1, Liu Fuchuan1、2, and Liu Liren1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/aos201434.0828002 Cite this Article Set citation alerts
    Lu Zhiyong, Sun Jianfeng, Zhi Ya′nan, Zhou Yu, Liu Fuchuan, Liu Liren. Electrically Controlled Parabolic Wavefront Scanner in Down-Looking Synthetic Aperture Imaging Ladar[J]. Acta Optica Sinica, 2014, 34(8): 828002 Copy Citation Text show less
    References

    [1] R L Lucke, L J Richard, M Bashkansky, et al.. Synthetic Aperture Ladar (SAL): Fundamental Theory, Design Equations for a Satellite System, and Laboratory Demonstration[R]. Naval Research Laboratory Report, 2002, NRL/FR/7218-02-10, 051.

    [2] M Bashkansky, R L Lucke, E Funk, et al.. Two-dimensional synthetic aperture imaging in the optical domain[J]. Opt Lett, 2002, 27(22): 1983-1985.

    [3] B Krause, J Buck, C Ryan, et al.. Synthetic aperture ladar flight demonstration[C]. CLEO:2011-Laser Applications to Photonic Applications, OSA Technical Digest (CD), 2011.

    [4] Zhou Yu, Xu Nan, Luan Zhu, et al.. 2D imaging experiment of a 2D target in a laboratory-scale synthetic aperture imaging ladar[J]. Acta Optica Sinica, 2009, 29(7): 2030-2032.

    [5] Liu Liren, Zhou Yu, Zhi Ya′nan, et al.. A large-aperture synthetic aperture imaging ladar demonstrator and its verification in laboratory space[J]. Acta Optica Sinica, 2011, 31(9): 0900112.

    [6] Liu Liren. Principle of down-looking synthetic aperture imaging ladar[J]. Acta Optica Sinica, 2012, 32(9): 0928002.

    [7] Liren Liu. Coherent and incoherent synthetic-aperture imaging ladars and laboratory-space experimental demonstrations[J]. Appl Opt, 2013, 52(4): 579-599.

    [8] Lu Zhiyong, Sun Jianfeng, Zhi Ya′nan, et al.. Influence of inner wave-front aberration on down-looking synthetic aperture imaging ladar imaging[J]. Acta Optica Sinica, 2014, 34(7): 0728001.

    [9] P F Mcmanamon. An overview of optical phased array technology and status[C] . SPIE, 2005, 5947: 594701.

    [10] D A Scrymgeour, A Sharan, V Gopalan, et al.. Cascaded electro-optic scanning of laser light over large angles using domain miscroengineered ferroelectrics[J]. Appl Phys Lett, 2002, 81(17): 3140-3142.

    [11] D A. Scrymgeour, Y Barad, V Gopalan, et al.. Large-angle electro-optic laser scanner on LiTaO3 fabricated by in situ monitoring of ferroelectric-domain micropatterning[J]. Appl Opt, 2001, 40( 34): 6236- 6241.

    [12] T C Lee, J D Zook. Light beam deflection with electrooptic prisms[J]. IEEE J Quantum Electronics, 1968, 4(7): 442-454.

    CLP Journals

    [1] Li Guangyuan, Sun Jianfeng, Zhou Yu, Lu Zhiyong, Zhang Guo, Xu Mengmeng, Zhang Bo. Self-compensation high-speed spatial wavefront modulator of down-looking synthetic aperture ladar[J]. Infrared and Laser Engineering, 2018, 47(10): 1030001

    [2] Zhang Ning, Lu Zhiyong, Sun Jianfeng, Zhou Yu, Luan Zhu, Li Gunagyuan, Liu Liren. Research on the Signal-to-Noise Ratio in Sliding Spotlight Mode Down-Looking Synthetic Aperture Imaging Ladar[J]. Acta Optica Sinica, 2016, 36(8): 828001

    Lu Zhiyong, Sun Jianfeng, Zhi Ya′nan, Zhou Yu, Liu Fuchuan, Liu Liren. Electrically Controlled Parabolic Wavefront Scanner in Down-Looking Synthetic Aperture Imaging Ladar[J]. Acta Optica Sinica, 2014, 34(8): 828002
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