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首页> 外文期刊>Applied optics >Resonance-enhanced, rare-gas-assisted femtosecond-laser electronic-excitation tagging in argon/nitrogen mixtures
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Resonance-enhanced, rare-gas-assisted femtosecond-laser electronic-excitation tagging in argon/nitrogen mixtures

机译:共振增强,稀有气体辅助飞秒激光电子激励标记在氩/氮气混合物中

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摘要

Multiphoton-resonance enhancement of a rare-gas-assisted nitrogen femtosecond-laser electronic-excitationtagging (FLEET) signal is demonstrated. The FLEET signal is ideal for velocimetric tracking of nitrogen gas in flow environments by virtue of its long-lived nature. By tuning to three-photon-resonant transitions of argon, energy can be more efficiently deposited into the mixture, thereby producing a stronger and longer-lived FLEET signal following subsequent efficient energy transfer from excited-state argon to the C ((3)Pi(u)) excited state of nitrogen. Such resonant excitation exhibits as much as an order of magnitude increase in this rare-gas-assisted FLEET signal, compared to near-resonance excitation of seeded argon demonstrated in previous work, while reducing the required input excitation-pulse energies by two orders of magnitude compared to traditional FLEET. (C) 2021 Optical Society of America
机译:演示了稀有气体辅助氮飞秒激光电子激发标记(FLEET)信号的多光子共振增强。由于其长寿命特性,FLEET信号非常适合在流动环境中对氮气进行速度跟踪。通过调谐到氩的三光子共振跃迁,能量可以更有效地沉积到混合物中,从而在随后从激发态氩到氮的C((3)π(u))激发态的有效能量转移之后,产生更强且寿命更长的快速信号。这种共振激励在这种罕见的气体辅助震源组信号中表现出高达一个数量级的增加,与之前工作中证明的种子氩的近共振激励相比,同时与传统震源组相比,所需的输入激励脉冲能量减少了两个数量级。(2021)美国光学学会

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  • 来源
    《Applied optics 》 |2021年第15期| 共6页
  • 作者单位

    Spectral Energies LLC 4065 Execut Dr Beavercreek OH 45430 USA;

    Spectral Energies LLC 4065 Execut Dr Beavercreek OH 45430 USA;

    Aerosp Syst Directorate Air Force Res Lab Wright Patterson AFB OH 45433 USA;

    Aerosp Syst Directorate Air Force Res Lab Wright Patterson AFB OH 45433 USA;

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  • 正文语种 eng
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