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Important kinetic effects in the hybrid ElectricOIL system

机译:混合电动油系统的重要动力学效应

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Laser action at 1315 nm on the I(~2P_(1/2)) → I(~2P_(3/2)) transition of atomic iodine has been obtained by a near resonant energy transfer from O_2(a~1Δ) produced using a low-pressure electric discharge. In the electric discharge oxygen-iodine laser (ElectricOIL) the discharge production of atomic oxygen, ozone, and other excited species adds significantly higher levels of complexity to the post-discharge kinetics which are not encountered in a classic purely chemical O_2(a~1Δ) generation system. In this paper, the discharge species output for laser operating conditions are discussed. Spatial measurements of O_2(a~1Δ) and O_2(b~1Σ) are reported, and various methods for the determination of atomic oxygen levels are discussed and compared. The injection of NO_x into the system to benefit O_2(a~1Δ) production is investigated.
机译:原子碘的I(〜2P_(1/2))→I(〜2P_(3/2))跃迁在1315 nm处的激光作用是通过从O_2(a〜1Δ)产生的近共振能量转移获得的低压放电。在放电氧碘激光器(ElectricOIL)中,原子氧,臭氧和其他受激物质的放电产生使放电后动力学的复杂性大大提高,这在经典的纯化学O_2(a〜1Δ)中是没有的)生成系统。本文讨论了激光操作条件下的放电种类输出。报道了O_2(a〜1Δ)和O_2(b〜1Σ)的空间测量,并讨论和比较了测定原子氧水平的各种方法。研究了向系统中注入NO_x以提高O_2(a〜1Δ)的产量。

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