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Femtosecond laser tagging for velocimetry in argon and nitrogen gas mixtures

机译:用于氩气和氮气混合物中的Velocimetry的飞秒激光标记

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摘要

Tagging is demonstrated in argon and nitrogen gases using a femtosecond laser with pulse energies of approximately 70 mu J through a nonresonant ionization process at 267 nm. The signal fluorescence lifetime in pure argon and nitrogen-argon mixtures are measured and found to be long enough to make mean velocity and turbulence measurements in a subsonic flow. In pure argon, the dominating processes involve atomic transitions between 700 and 900 nm. In argon-nitrogen mixtures, nitrogen quenches atomic argon species and the dominant radiating processes are transitions in the nitrogen second positive system. In pure nitrogen, emission on the microsecond time scale comes from the nitrogen first positive system. Lower energy density is needed for tagging and narrower tagged lines are produced using 267 nm as compared to femtosecond laser tagging in argon and nitrogen using 400 nm or 800 nm. Velocimetry using the 267 nm line is demonstrated in a turbulent argon pipe flow and the Taylor microscale of the flow is determined. (c) 2018 Optical Society of America
机译:在氩气和氮气中展示标记,使用飞秒激光器,通过在267nm处通过非族聚体电离过程脉冲能量。测量纯氩和氮气混合物中的信号荧光寿命,并发现足够长,以使亚音流流动的平均速度和湍流测量。在纯粹的氩气中,主导过程涉及700至900nm之间的原子过渡。在氩气混合物中,氮气猝灭原子氩物种和显性辐射过程是氮第二正系统的转变。在纯氮中,微秒刻度的发射来自氮第一正系统。对于标记和较窄的标记线,使用267nm而与使用400nm或800nm的氮气的飞秒激光标记相比,使用267nm产生更低的能量密度。使用267nm线的测量仪在湍流氩管流中进行说明,并确定流程的泰勒微米。 (c)2018年光学学会

著录项

  • 来源
    《Optics Letters》 |2018年第3期|共4页
  • 作者

    Zhang Yibin; Miles Richard B.;

  • 作者单位

    Princeton Univ Dept Mech &

    Aerosp Engn Princeton NJ 08544 USA;

    Princeton Univ Dept Mech &

    Aerosp Engn Princeton NJ 08544 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;光学;
  • 关键词

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