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首页> 外文期刊>Applied physics >Theoretical modeling of single-laser-shot, chirped-probe-pulse femtosecond coherent anti-Stokes Raman scattering thermometry
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Theoretical modeling of single-laser-shot, chirped-probe-pulse femtosecond coherent anti-Stokes Raman scattering thermometry

机译:飞秒,chi脉冲,飞秒相干反斯托克斯拉曼散射测温的理论模型

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摘要

Chirped-probe-pulse (CPP) femtosecond (fs) coherent anti-Stokes Raman scattering (CARS) spectroscopy for single-laser-shot temperature measurements in flames is discussed. In CPP fs CARS, a giant Raman coherence is created in the medium by impulsive pump-Stokes excitation, and the temperature-dependent temporal decay of this initial coherence is mapped into the frequency of the CARS signal using a CPP. The theory of the CPP fs CARS technique is presented. A computer code has been developed to calculate theoretical CPP fs CARS spectra. The input parameters for the calculation of the theoretical spectra include the temperature, probe time delay, ratio of the resonant and nonresonant susceptibilities, and parameters for characterizing the pump, Stokes and probe pulses. The parameters for characterizing the pump, Stokes and probe pulses are determined from the best fit of theoretical spectra to experimental spectra acquired from calibration flames at a known temperature. For spectra acquired in subsequent measurements, these laser parameters are fixed and temperature is determined as one of the fit parameters from the best fit of theoretical spectra to experimental spectra. For single-laser-shot CPP fs CARS temperature measurements performed in steady, near-adiabatic flames, the best-fit temperature distribution width is typically less than 1.5% of the mean temperature. The mean temperature is accurate to within approximately 3% with respect to the adiabatic flame temperature. The most significant limitation on temperature measurement accuracy is associated with the evaluation of the theoretical laser parameters. Significant improvements in the temperature measurement accuracy are expected once monitoring equipment capable of characterizing the spectrum and phase of each laser pulse is incorporated in the experiments.
机译:讨论了for脉冲(CPP)飞秒(fs)相干反斯托克斯拉曼散射(CARS)光谱用于火焰中单激光发射温度测量的问题。在CPP fs CARS中,通过脉冲泵浦-斯托克斯激励在介质中产生巨大的拉曼相干,并且使用CPP将初始相干的温度相关时间衰减映射到CARS信号的频率中。介绍了CPP fs CARS技术的理论。已经开发了计算机代码来计算理论CPP fs CARS光谱。用于计算理论光谱的输入参数包括温度,探头时间延迟,谐振和非谐振磁化率的比值以及表征泵,斯托克斯和探头脉冲的参数。根据理论光谱与在已知温度下从校准火焰获得的实验光谱的最佳拟合,确定表征泵,斯托克斯和探针脉冲的参数。对于在随后的测量中获取的光谱,这些激光参数是固定的,并且将温度确定为从理论光谱与实验光谱的最佳拟合的拟合参数之一。对于在稳定,接近绝热的火焰中进行单次脉冲CPP fs CARS温度测量,最合适的温度分布宽度通常小于平均温度的1.5%。相对于绝热火焰温度,平均温度精确到大约3%以内。温度测量精度的最大限制与理论激光参数的评估有关。一旦将能够表征每个激光脉冲的光谱和相位的监测设备安装到实验中,就有望大大提高温度测量的准确性。

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  • 来源
    《Applied physics》 |2011年第3期|p.699-714|共16页
  • 作者单位

    School of Mechanical Engineering, Purdue University, West Lafayette, IN 47907, USA;

    School of Mechanical Engineering, Purdue University, West Lafayette, IN 47907, USA;

    Spectral Energies, LLC, 5100 Springfield Street, Suite 301,Dayton, OH 45431, USA;

    Spectral Energies, LLC, 5100 Springfield Street, Suite 301,Dayton, OH 45431, USA;

    Air Force Research Laboratory, Propulsion Directorate,Wright-Patterson AFB, OH 45433, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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