光抽运碱蒸汽激光器的波长分异

G. Perram
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引用次数: 2

摘要

利用高p态的单光子激发、受激拉曼过程、S态和D态的双光子激发以及S-D跃迁的电四重激发,开发了光抽运碱蒸汽激光器的备选波长。Cs 72D的两个光子激发导致竞争和级联激光产生工作在D-P跃迁的红色和红外激光器,其次是工作在P-S跃迁的紫外、蓝色和标准近红外DPAL跃迁。当泵浦强度超过1 MW/cm2时,S-D泵浦跃迁被完全漂白,允许在基态终止激光跃迁。这些系统的动力学是复杂的,由于许多光学跃迁之间的人口反转竞争。光抽运中红外铷脉冲无反光镜激光器在热管中沿2.73 μm的62P1/2 - 62S1/2跃迁和2.79 μm的62P1/2 - 62S1/2跃迁,最大能量约为100 nJ。随着铷蒸气密度的增加,性能显著提高,这与先前的工作直接矛盾。没有观察到与能量池或电离动力学相关的结垢限制。红外对抗的实际应用取决于蓝色二极管泵浦源的进一步发展。最后,利用稳定谐振器和脉冲激光激发,观察了钾蒸气在D1和D2线附近的受激电子拉曼散射和超拉曼过程。在超过70 cm-1的泵浦激光调谐范围内,可以同时独立地观察到一阶、二阶斯托克斯线和反斯托克斯线。当泵浦在kd1和D2线之间调谐时,高效的超拉曼过程占主导地位,斜率效率超过10%。拉曼位移激光器可作为高功率二极管抽运碱激光器的目标照明器或大气补偿信标。
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Wavelength diversity in optically pumped alkali vapor lasers
Alternative wavelengths for optically pumped alkali vapor lasers have been developed using single photon excitation of higher lying P-states, stimulated Raman processes, two-photon excitation of S and D states, and electric quadruple excitation on S-D transitions. Two photon excitation of Cs 72D leads to competing and cascade lasing producing red and infrared lasers operating on the D-P transitions, followed by ultraviolet, blue, the standard near infrared DPAL transitions operating on P-S transitions. The S-D pump transitions are fully bleached at pump intensities exceeding 1 MW/cm2, allowing for lasing transitions that terminate on the ground state. The kinetics of these systems are complex due to competition for population inversion among the many optical transitions. An optically pumped mid-infrared rubidium pulsed, mirrorless laser has also been demonstrated in a heat pipe along both the 62P3/2 - 62S1/2 transition at 2.73 μm and the 62P1/2 - 62S1/2 transition at 2.79 μm with a maximum energy of ~100 nJ. Performance improves dramatically as the rubidium vapor density is increased, in direct contradiction with the prior work. No scaling limitations associated with energy pooling or ionization kinetics have been observed. Practical application for infrared counter measures depends on the further development of blue diode pump sources. Finally, stimulated electronic Raman scattering and hyper-Raman processes in potassium vapor near the D1 and D2 lines have been observed using a stable resonator and pulsed laser excitation. First and second order Stokes and anti-Stokes lines were observed simultaneously and independently for a pump laser tuning range exceeding 70 cm-1. When the pump is tuned between the K D1 and D2 lines, an efficient hyper-Raman process dominates with a slope efficiency that exceeds 10%. Raman shifted laser may be useful as a target illuminator or atmospheric compensation beacon for a high power diode pumped alkali laser.
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