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Diode laser pumping sources for cryogenically cooled solid-state lasers

机译:用于低温冷却固态激光器的二极管激光泵浦源

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One of the recent advances in solid-state laser (SSL) defense technology is the 100W level Er-doped "eye-safe" laser with low quantum defect pumping at 1.53μm [1]. Major technical challenges in achieving high-wattage devices include increasing the system power conversion efficiency and arranging the removal of heat from both the crystal and the pumps. It is known that performance of the crystal can be improved dramatically by cryogenic cooling [2]. Hence, it is desirable to have cryo-cooled pumps to realize ergonomic and efficient diode-pumped SSL with unified cryogenic cooling. In this paper we report on the development of LN2-cooled InP-based X-1.5-1.6 pm diode pumps. The broad area lasers demonstrated 11W in continuous-wave (CW) regime at an operating current of 20A. Despite the highest CW power measured to date from an InP-based emitter, we did not observe catastrophic optical mirror damage. The spectral width of the radiation from a cooled device'decreased 1.5-2 from its room-temperature value, which will significantly improve pumping efficiency. We show that laser diode design has to be optimized for performance at cryogenic temperatures. Reviewing the data on LN2 cooled lasers emitting in the wavelength range of 1.13 – 1.8 pm, we discuss the route to increase the power conversion of the LN2 cooled InP-based pumps to greater than 60% and further narrow and stabilize the laser emission spectrum.
机译:固态激光器(SSL)防御技术的最近进步之一是100W电平的ER掺杂“眼安全”激光,具有低量子缺陷泵送在1.53μm[1]。实现高瓦数装置的主要技术挑战包括提高系统功率转换效率,并从晶体和泵中排出热量。已知晶体的性能可以通过低温冷却急剧提高[2]。因此,希望具有低温冷却泵,以实现具有统一低温冷却的符合人体工程学和有效的二极管泵浦SSL。在本文中,我们报告了LN2冷却INP的X-1.5-1.6 PM二极管泵的开发。宽面积激光器在20A的工作电流下在连续波(CW)方案中展示了11W。尽管迄今为止从基于INP的发射器测量的CW功率最高,但我们没有观察到灾难性的光学镜损坏。从冷却装置的辐射光谱宽度从其房间温度值辐射1.5-2,这将显着提高泵送效率。我们表明激光二极管设计必须在低温温度下进行优化。在波长范围内的LN2冷却激光器上审查数据的数据,我们讨论了将LN2冷却的INP基泵的功率转换增加到大于60%并进一步窄并稳定激光发射光谱的途径。

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