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首页> 外文期刊>Bulletin of the Korean Chemical Society >Temperature Dependence of the Vibration-Vibration Energy Transfer in the Deexcitaion of NO(2) by NO(0)
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Temperature Dependence of the Vibration-Vibration Energy Transfer in the Deexcitaion of NO(2) by NO(0)

机译:NO(2)被NO(0)消除时的振动-振动能量转移的温度依赖性

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The temperature dependence of the vibrational relaxation of NO(= 2) by NO(v = 0) has been investigated over the temperature range 100-3000 K. We have assumed that the deexcitation of NO(2) by NO(0) undergoes vibration-to-vibration (VV) energy exchange with the transfer of the energy mismatch ツE through rotation (R) and translation(T). The relaxation rate constants are calculated by solving the time-dependent Schrodinger equation. The sum of V-V, T, and V-V, R contributions shows very weak temperature dependence and is in reasonable agreement with observed data over the temperature range 300-3000 K.
机译:已经研究了在100-3000 K的温度范围内NO(v = 0)引起的NO(= 2)振动弛豫的温度依赖性。我们假设NO(2)对NO(2)的去激励经历了振动到振动(VV)的能量交换,通过旋转(R)和平移(T)传递能量失配ツE。通过求解与时间有关的薛定inger方程来计算松弛率常数。 V-V,T和V-V,R的总和显示出非常弱的温度依赖性,并且与在300-3000 K的温度范围内观察到的数据合理地吻合。

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