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Study on energy type laser active interference pulsed laser fuze

机译:能源型激光有源干扰脉冲激光引信的研究

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As a method of active laser interference, energy laser interference can be used to interfere with laser fuzes. This paper studies how the energy-type laser interference the pulsed laser fuze. By simulating the transmission characteristics of the fundamental mode Gaussian beam in free space, the energy transmission model of the fundamental mode Gaussian beam is established. The thermal conductivity theory is used to calculate the thermal effect of the fundamental mode Gaussian beam irradiating the photosensitive surface of the Si PIN photodetector, and the related physical processes are discussed. The results show that a monopulse laser with a wavelength of 1064 nm, pulse width of 10 ns, and peak power of 11.5 MW can generate a temperature of about 1800 K in the center of the silicon photosensitive surface, which can cause irreversible damage to the photodetector, and the detection performance of the photodetector is sharply weaked or even unfunctioned. This result provides theoretical basis for the further development of the jammer.
机译:作为主动激光干扰的方法,可以使用能量激光干扰来干扰激光浮雕。本文研究了能源型激光干扰如何脉冲激光引信。通过在自由空间中模拟基本模式高斯光束的传输特性,建立了基本模式高斯光束的能量传输模型。导热性理论用于计算照射Si销光度探测器的光敏表面的基本模式高斯光束的热效应,并且讨论了相关的物理过程。结果表明,具有1064nm,脉冲宽度为10ns的脉冲宽度的单脉冲激光,11.5 mw的峰值功率可以在硅光敏表面的中心产生约1800k的温度,这可能导致对此的不可逆损坏光电探测器,光电探测器的检测性能急剧削弱甚至不通功。该结果为进一步发展的干扰物提供了理论依据。

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