首页> 外文OA文献 >PHOTODISSOCIATION OF HNO3 AT 193 NM - NEAR-INFRARED EMISSION OF NO DETECTED BY TIME-RESOLVED FOURIER-TRANSFORM SPECTROSCOPY
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PHOTODISSOCIATION OF HNO3 AT 193 NM - NEAR-INFRARED EMISSION OF NO DETECTED BY TIME-RESOLVED FOURIER-TRANSFORM SPECTROSCOPY

机译:HNO3在193 NM处的光解离-时间分辨傅里叶变换光谱检测到的近红外NO的排放

摘要

[[abstract]]Rotationally resolved emission of NO, produced from photolysis of HNO3 at 193 nm, in the near infrared region (8900-9300 cm(-1)) was recorded with a step-scan Fourier-transform interferometer at a resolution of 0.1 cm(-1). The emission is assigned as NO D (2) Sigma(+) -A (2) Sigma(+) (nu',nu'')=(0,0) band with rotational states N'=17-42. Emission from selective rotational states of NO D (2) Sigma(+) was observed when HNO3 was photolyzed with an ArF excimer laser having a narrow bandwidth approximate to 0.01 nm. The experimental results indicate that the D (2) Sigma(+) state of NO is formed via absorption of another 193 nm photon by NO (nu''=1) in the ground electronic state. The measured distribution of intensity implies that NO is produced highly rotationally excited; the most likely mechanism for formation of NO is from the unstable NO2 fragment undergoing secondary dissociation.
机译:[[摘要]]用步进扫描傅里叶变换干涉仪记录了在近红外区(8900-9300 cm(-1))中HNO3在193 nm处的光解所产生的NO的旋转分辨发射。 0.1厘米(-1)。发射被指定为NO D(2)Sigma(+)-A(2)Sigma(+)(nu',nu'')=(0,0)带,旋转状态为N'= 17-42。当用窄带宽约0.01 nm的ArF准分子激光光解HNO3时,观察到NO D(2)Sigma(+)选择性旋转状态的发射。实验结果表明,在基态电子状态下,NO(nu''= 1)吸收了另一个193 nm光子,形成了NO的D(2)Sigma(+)状态。测得的强度分布表明NO是高度旋转激发的。 NO形成的最可能机制是不稳定的NO2片段经历了二次解离。

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