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JIANG Tian, CHENG Xiang-ai. Study on regular distribution of bright points with 3CCD irradiated by laser[J]. LASER TECHNOLOGY, 2010, 34(2): 168-169,213. DOI: 10.3969/j.issn.1001-3806.2010.02.007
Citation: JIANG Tian, CHENG Xiang-ai. Study on regular distribution of bright points with 3CCD irradiated by laser[J]. LASER TECHNOLOGY, 2010, 34(2): 168-169,213. DOI: 10.3969/j.issn.1001-3806.2010.02.007

Study on regular distribution of bright points with 3CCD irradiated by laser

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  • Received Date: February 19, 2009
  • Revised Date: March 11, 2009
  • Published Date: March 24, 2010
  • Besides main specula and diffraction spots,in order to prove bright points distributing regularly adjacent to main facular with 3CCD irradiated by laser,it was explained by the theory of Fourier optics and simulated numerically.The results of numerical simulation agree approximately with the experimental observation.It is found that the bright points distributed regularly adjacent to main facular is spectral distribution on the focal plane of the array of lens when the laser irradiates a hexagonal aperture,rather than what is induced by stray light.
  • [1]
    LIU Z J,LU Q Sh,JIANG Zh P,et al.Study on damage effect in CCD detectors irradiated locally by laser[J].Laser Technology,1994,18(6):228-230(in Chinese).
    [2]
    WANG J Q,LUO B Q,FANG Zh Y,et al.Study on laser beam combination by means of isosceles triangle phase grating[J].Laser Technology,2007,31(6):561-564(in Chinese).
    [3]
    NI X W,LU J,HE A Zh.Measurement of laser damaging thresholds of CCD devices[J].Laser Technology,1994,18(3):153-156(in Chinese).
    [4]
    ZHONG H R,LU Q Sh,LU Z J,et al.Review on the laser-induced damage mechanism of CCD detector[J].High Power Laser and Particle Beams,1998,10(4):537-542(in Chinese).
    [5]
    SUN Y Q,CHENG X A,WANG F.Method of quality evaluation aimed at laser-disturbing image[J].Infrared and Laser Engineering,2007,36(5):659-662(in Chinese).
    [6]
    ZHANG Zh,CHEN X A,JIANG Zh F.Excessive saturation effect of visible light CCD[J].High Power Laser and Particle Beams,2008,20(6):917-920(in Chinese).
    [7]
    GUO Sh F,CHENG X A,BO X Q,et al.Failure of array CCD irradiated by high-repetitive femto-second laser[J].High Power Laser and Particle Beams,2007,19(11):1783-1786(in Chinese).
    [8]
    LI F M,NIXON O,NATHAN A.Degradation behavior and damage mechanisms of CCD image sensor with deep-UV laser radiation[J].IEEE Transactions on Electron Devices,2004,51(12):2229-2236.
    [9]
    TIAN Y X.Fourier transformation and its application in Fraunhofor diffraction by circular aperture[J].Journal of Xi'an University of Science and Technology,2005,25(1):106-113(in Chinese).
    [10]
    BORN M,WOLF E.Principles of optics[M].Beijing:Publishing House of Electronics Industry,2006:371-380(in Chinese).
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