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Diagnostic study of four-wave-mixing-based electric-field measurements in high-pressure nitrogen plasmas

机译:基于四波混频的高压氮等离子体电场测量的诊断研究

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We present the results of a diagnostic study of the use of coherent four wave mixing for in situ measurement of an electric field in air or in nitrogen-containing plasmas. Static electric fields in air at a nominal pressure of 625 Torr and temperature of 300 K are detected using vibrational CARS of nitrogen. It is shown that the ratio of the infrared signal to the vibrational N_(2) CARS signal is equal to approximately 10~(-8) at 8.33 kV/cm, a factor of approximately 50 less than that predicted assuming equal third-order nonlinear susceptibilities. It is also shown that the spatial resolution of a typical collinear geometry measurement is approximately 1 cm. Finally, it is shown that achieving sensitivities of the order of 1 kV/cm requires that the coherent Raman pumping be performed in the highly saturated and Stark broadened regime.
机译:我们提出了使用相干四波混频技术对空气或含氮等离子体中电场进行原位测量的诊断研究结果。使用氮气的振动CARS可检测到标称压力为625 Torr,温度为300 K的空气中的静电场。结果表明,红外信号与振动的N_(2)CARS信号之比在8.33 kV / cm时大约等于10〜(-8),比假设三阶非线性相等的预测值小约50倍。敏感性。还表明,典型的共线几何测量的空间分辨率约为1 cm。最后,表明要达到1 kV / cm的灵敏度,就需要在高度饱和和Stark加宽状态下进行相干拉曼泵浦。

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