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Laser excitation dynamics of argon metastables generated in atmospheric pressure flows by microwave frequency microplasma arrays

机译:微波频率等离子体阵列在大气压力下产生的氩亚稳的激光激发动力学

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The optically pumped rare-gas metastable laser is a chemically inert analogue to diode-pumped alkali (DPAL) and alkali-exciplex (XPAL) laser systems. Scaling of these devices requires efficient generation of electronically excited metastable atoms in a continuous-wave electric discharge in flowing gas mixtures at atmospheric pressure. This paper describes initial investigations of the use of linear microwave micro-discharge arrays to generate metastable rare-gas atoms at atmospheric pressure in optical pump-and-probe experiments for laser development. Power requirements to ignite and sustain the plasma at 1 atm are low, <30 W. We report on the laser excitation dynamics of argon metastables, Ar (4s, 1s_5) (Paschen notation), generated in flowing mixtures of Ar and He at 1 atm. Tunable diode laser absorption measurements indicate Ar(1s_5) concentrations near 3 × 10~(12) cm~(-3) at 1 atm. The metastables are optically pumped by absorption of a focused beam from a continuous-wave Ti:S laser, and spectrally selected fluorescence is observed with an InGaAs camera and an InGaAs array spectrometer. We observe the optical excitation of the 1s_5→2p_9 transition at 811.5 nm and the corresponding laser-induced fluorescence on the 2p_(10)→1s_5 transition at 912.3 nm; the 2p_(10) state is efficiently populated by collisional energy transfer from 2p_9. Using tunable diode laser absorption/gain spectroscopy, we observe small-signal gains of ~1 cm~(-1) over a 1.9 cm path. We also observe stable, continuous-wave laser oscillation at 912.3 nm, with preliminary optical efficiency ~55%. These results are consistent with efficient collisional coupling within the Ar(4s) manifold.
机译:光泵浦稀有气体亚稳激光器是二极管泵浦碱金属(DPAL)和碱金属络合物(XPAL)激光系统的化学惰性模拟物。这些装置的缩放要求在大气压力下在流动的气体混合物中以连续波放电的方式高效产生电子激发的亚稳态原子。本文介绍了使用线性微波微放电阵列在常压下在激光泵浦和探针实验中产生亚稳态稀有气体原子的初步研究。在1 atm点燃和维持等离子体的功率要求很低,<30W。我们报道了在1 Ar和He的流动混合物中产生的氩亚稳Ar(4s,1s_5)(Paschen符号)的激光激发动力学。 atm。可调二极管激光器的吸收测量表明,在1个大气压下,Ar(1s_5)浓度接近3×10〜(12)cm〜(-3)。通过吸收来自连续波Ti:S激光器的聚焦光束,光学泵浦亚稳态,并使用InGaAs相机和InGaAs阵列光谱仪观察光谱选择的荧光。我们在811.5 nm处观察到1s_5→2p_9跃迁的光激发,并在912.3 nm处观察到相应的激光诱导的2p_(10)→1s_5跃迁的荧光; 2p_(10)状态通过2p_9的碰撞能量转移而得到有效填充。使用可调二极管激光吸收/增益光谱,我们在1.9 cm的路径上观察到了〜1 cm〜(-1)的小信号增益。我们还观察到912.3 nm处稳定的连续波激光振荡,初步光学效率约为55%。这些结果与Ar(4s)歧管内的有效碰撞耦合一致。

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