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选择性双光子吸收共振飞秒激光电子激发标记测速法

Selective two-photon absorptive resonance femtosecond-laser electronic-excitation tagging velocimetry.

作者信息

Jiang Naibo, Halls Benjamin R, Stauffer Hans U, Danehy Paul M, Gord James R, Roy Sukesh

出版信息

Opt Lett. 2016 May 15;41(10):2225-8. doi: 10.1364/OL.41.002225.

Abstract

Selective two-photon absorptive resonance femtosecond-laser electronic-excitation tagging (STARFLEET), a nonseeded ultrafast-laser-based velocimetry technique, is demonstrated in reactive and nonreactive flows. STARFLEET is pumped via a two-photon resonance in N using 202.25 nm 100 fs light. STARFLEET greatly reduces the per-pulse energy required (30 μJ/pulse) to generate the signature FLEET emission compared to the conventional FLEET technique (1.1 mJ/pulse). This reduction in laser energy results in less energy deposited in the flow, which allows for reduced flow perturbations (reactive and nonreactive), increased thermometric accuracy, and less severe damage to materials. Velocity measurements conducted in a free jet of N and in a premixed flame show good agreement with theoretical velocities, and further demonstrate the significantly less intrusive nature of STARFLEET.

摘要

选择性双光子吸收共振飞秒激光电子激发标记技术(STARFLEET)是一种基于无种子超快激光的测速技术,已在反应流和非反应流中得到验证。STARFLEET通过使用202.25纳米、100飞秒的光在N中产生双光子共振来泵浦。与传统的FLEET技术(1.1毫焦/脉冲)相比,STARFLEET大大降低了产生特征性FLEET发射所需的单脉冲能量(30微焦/脉冲)。激光能量的这种降低导致沉积在流中的能量减少,从而减少了流动扰动(反应性和非反应性),提高了温度测量精度,并减少了对材料的严重损坏。在N的自由射流和预混火焰中进行的速度测量与理论速度显示出良好的一致性,并进一步证明了STARFLEET显著更低的侵入性。

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