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All-solid-state UV transmitter development for ozone sensing applications

机译:用于臭氧传感应用的全固态紫外线发射器开发

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In this paper, recent progress made in the development of an all-solid-state UV transmitter suitable for ozone sensing applications from space based platforms is discussed. A nonlinear optics based UV setup based on Rotated Image Singly Resonant Twisted Rectangle (RISTRA) optical parametric oscillator (OPO) module was effectively coupled to a diode pumped, single longitudinal mode, conductively cooled, short-pulsed, high-energy Nd:YAG laser operating at 1064 nm with 50 Hz PRF. An estimated 10 mJ/pulse with ~10% conversion efficiency at 320 nm has been demonstrated limited only by the pump pulse spatial profile. The current arrangement has the potential for obtaining greater than 200 mJ/pulse. Previously, using a flash-lamp pumped Nd:YAG laser with round, top-hat profile, up to 24% IR-UV conversion efficiency was achieved with the same UV module. Efforts are underway to increase the IR-UV conversion efficiency of the all solid-state setup by modifying the pump laser spatial profile along with incorporating improved OPO crystals.
机译:在本文中,讨论了开发适用于基于太空平台的臭氧传感应用的全固态紫外线发射器的最新进展。基于旋转图像单共振扭曲矩形(RISTRA)光参量振荡器(OPO)模块的基于非线性光学的UV设置有效地耦合到二极管泵浦,单纵模,传导冷却,短脉冲,高能Nd:YAG激光器在50 Hz PRF下在1064 nm下工作。已经证明,在320 nm处约10 mJ /脉冲的转换效率约为10%,仅受泵浦脉冲空间分布的限制。当前的布置具有获得大于200mJ /脉冲的潜力。以前,使用带圆形顶帽轮廓的闪光灯泵浦Nd:YAG激光器,在相同的UV模块下可实现高达24%的IR-UV转换效率。通过修改泵浦激光器的空间轮廓并结合改进的OPO晶体,正在努力提高所有固态装置的IR-UV转换效率。

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