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首页> 外文期刊>The Journal of Chemical Physics >Nanosecond time-resolved FTIR emission spectroscopy: Monitoring the energy distribution of highly vibrationally excited molecules during collisional deactivation
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Nanosecond time-resolved FTIR emission spectroscopy: Monitoring the energy distribution of highly vibrationally excited molecules during collisional deactivation

机译:纳秒级时间分辨FTIR发射光谱:监测碰撞失活过程中高度振动激发的分子的能量分布

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The 10(-8) second time resolution in infrared emission spectroscopy has been demonstrated using a Fourier Transform spectrometer paired with a fast HECdTe detector. The rapid time response of this system has enabled us to measure, with subcollisional period time resolution, the emission spectrum of highly vibrationally excited NO2 molecules during collisional deactivation by room temperature NO2. The greatly improved time resolution of the spectra allows the determination of N(E,t), the instantaneous energy distribution of the ensemble of excited molecules, with virtually no distortion due to collisional averaging. In addition, an improved procedure for extracting optimized N(E,t) from the spectral data makes no prior assumptions about the shape of the energy distribution. It is found that the distribution is well approximated as the sum of a Gaussian function at high vibrational energies and a population at low energies resulting from V-V transfer to bath NO;? molecules. The observation of a Gaussian-like function for the highly excited molecules is consistent with the widely invoked assumption that the step-size function of energy transfer per collision is exponential. (C) 1998 American Institute of Physics. [S0021-9606(98)02404-0]. [References: 21]
机译:使用傅立叶变换光谱仪和快速HECdTe检测器配对,已经证明了红外光谱中10(-8)秒的分辨率。该系统的快速时间响应使我们能够以碰撞下的时间分辨率来测量在室温下NO2碰撞失活期间高度振动激发的NO2分子的发射光谱。光谱的时间分辨率大大提高,可以确定N(E,t),即被激发分子的集合的瞬时能量分布,而实际上没有因碰撞平均而引起的失真。另外,一种用于从光谱数据中提取优化的N(E,t)的改进过程没有对能量分布的形状做出任何先验假设。发现该分布可以很好地近似为高振动能量下的高斯函数与低能量下的总体之和,这是由V-V传递到镀液NO引起的。分子。对于高激发分子的高斯函数的观察与广泛引用的假设一致,即每次碰撞能量转移的步长函数是指数的。 (C)1998美国物理研究所。 [S0021-9606(98)02404-0]。 [参考:21]

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