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光纤组束激光对可见光硅CCD的有效干扰距离分析

Analysis of effective jamming distance of combined fiber laser to visible light silicon CCD
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摘要 为了分析光纤组束激光对可见光硅CCD的有效干扰距离,对组束激光功率及可见光CCD的饱和阈值进行了分析。在弱湍流和热晕条件下对组束激光的远场功率密度进行了数值计算,计算结果表明该条件下组束激光对可见光CCD的有效干扰距离达到10km左右,组束激光是未来实施光电干扰的又一有效途径。 To analyze the effective jamming distance of combined fiber laser to visible light silicon CCD, the power of combined laser and saturation threshold of visible light silicon CCD are discussed. The numerical calculations of far field irradianee of combined laser under weak turbulence and thermal blooming intensity condition are developed. It is proved that the effective jamming distance to visible light silicon CCD can be as high as 10km, the combined fiber laser is another effective way to carry out photoelectric jamming in the future.
出处 《光学技术》 CAS CSCD 北大核心 2008年第5期758-760,763,共4页 Optical Technique
关键词 光电干扰 组束激光 可见光CCD 有效干扰距离 photoelectric jamming combined laser visible light CCD effective jamming distance
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  • 1任国光,黄裕年.机载激光武器的发展现状与未来[J].激光与红外,2005,35(5):309-314. 被引量:22
  • 2李永忠,范滇元.光纤激光器光束的叠加技术[J].激光与光电子学进展,2005,42(9):26-29. 被引量:48
  • 3肖瑞,侯静,姜宗福.光纤激光器的相干合成技术[J].激光技术,2005,29(5):516-518. 被引量:28
  • 4王双义,林殿阳,王超,吕志伟.光纤组束研究的新进展[J].激光技术,2005,29(6):657-661. 被引量:10
  • 5Monical Minden,Hans Bruesselbach,Jeffrey Rogers.Coherent combining of fiber lasers[A].2005 IEEE,Conference on Lasers and Electro-Optics Europe:718.
  • 6T Y Fan.Laser Beam Combining for High-Power,High-Radiance Sources[J].IEEE Journal of selected topics in quantum electronics,2005,11(3):570-571.
  • 7T Y Fan. Laser Beam Combining for High-Power High-Radiance Sources[ J]. IEEE Journal of Selected Topics in Quantum Electronics, 2005,11 (3) :573 - 574.
  • 8Dmitrii Kouznetsov. Limits of coherent addition of lasers:simple estimate [ J ]. Applied Physices A, 2003,189 (4) :1601 - 1602.
  • 9T Y Fan.Laser Beam Combining for high-power high-radiance sources[J].IEEE Journal of Selected Topics in Quantum Electronics,2005,111 (3):573-574.
  • 10T Y Fan.Laser beam combining for high-power high-radiance sources[J].IEEE Journal of Sele Cted Topics in Quantum Electronics,2005,11 (3):573-574.

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