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Development of a mid-infrared laser for study of infrared countermeasures techniques

机译:用于研究红外对策技术中红外激光器的开发

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Laser sources, which should emit wavelengths at band I, II and IV. Efficient diode pumped solid-state lasers, combined with efficient non-linear wavelength shifters, allow the development of practical tuneable mid-IR countermeasure sources. The paper describes the requirements and the development of a tabletop laser source for study of DIRCM techniques. Jamming laser systems must be able of creating pulse sequences in the frequency range between 100 Hz and 10,000 Hz, including the capability to mix and sweep the jam frequency. A Nd:YVO4 pump laser with maximum pump power of 3 Watt and pulse length of 10 ns, and a maximum modulation frequency of 100 kHz was selected. A linear single resonant OPO cavity with 30 mm long, 1mm thick PPLN crystals was build. With the tabletop laser system we were able to generate wavelengths from 1.5 to 4 micron. In band I, at 2 micron we can generate between 400-550 mW, and in band II, from 3-4 micron we can generate 130-160 mW laser jam power. The beam quality (M2) is approximately 2.5. The power efficiency for the idler was 8.8%, while the slope power efficiency was 15%. Jam patterns are generated by use of an acousto-optic modulator.
机译:激光源,其应在带I,II和IV的波长发射。高效的二极管泵浦固态激光器,结合有效的非线性波长换档机,允许开发实用可调调谐的中红外反常来源。本文介绍了用于研究DIRCM技术的桌面激光源的要求和开发。干扰激光系统必须能够在100Hz和10,000Hz之间的频率范围内创建脉冲序列,包括混合和扫描卡纸频率的能力。一个ND:YVO4泵激光器最大泵浦功率为3瓦,脉冲长度为10 ns,选择了100 kHz的最大调制频率。具有30mm长,1mm厚的PPLN晶体的线性单谐振OPO腔被构建。使用桌面激光系统,我们能够产生1.5至4微米的波长。在乐队I中,在2微米中,我们可以在400-550 MW之间产生,并且在频段II之间,3-4微米我们可以产生130-160 MW激光果酱功率。光束质量(M2)约为2.5。惰轮的功率效率为8.8%,斜率功率效率为15%。通过使用声光调制器产生卡纸图案。

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