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首页> 外文期刊>Japanese journal of applied physics >Modification of laser-induced fluorescence spectrum by additional azimuthal Doppler effect in optical vortex beams
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Modification of laser-induced fluorescence spectrum by additional azimuthal Doppler effect in optical vortex beams

机译:通过额外的方位角多普勒效应在光学涡流中改变激光诱导的荧光光谱

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摘要

Laser-induced fluorescence (LIF) method is a powerful tool to measure flow velocities of atomic and ionic species in a plasma. Optical vortex beams, which carry orbital angular momentum of light, have a potential to expand the capability of flow velocity measurements with LIF method, because an atom moving in an optical vortex beam experiences additional Doppler effect in the azimuthal direction. The LIF spectra obtained by substituting a commonly-used plane-wave-like beam with an optical vortex beam have been numerically evaluated. It is demonstrated that modification of the spectrum can be used to detect a fast flow perpendicular to the laser path, which is impossible to be observed by conventional method in principle. The use of standard deviation of the spectrum as an index of perpendicular flow velocity is also discussed. (C) 2020 The Japan Society of Applied Physics
机译:激光诱导的荧光(LiF)方法是一种强大的工具,用于测量等离子体中原子和离子物质的流速。携带轨道角度光的光学涡旋光束具有扩展与LiF法的流速测量能力的可能性,因为在光学涡流中移动的原子在方位角方向上体现了额外的多普勒效应。通过在数值评价用光涡流束代替具有光学涡流的共同使用的平面波状梁获得的LIF光谱。结果证明,光谱的修改可用于检测垂直于激光路径的快速流动,这原则上是不可能通过常规方法观察的。还讨论了光谱的标准偏差作为垂直速率速度指数。 (c)2020日本应用物理学会

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