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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Photolysis of NO2 at multiple wavelengths in the spectral region 200-205 nm - A velocity map imaging study
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Photolysis of NO2 at multiple wavelengths in the spectral region 200-205 nm - A velocity map imaging study

机译:NO2在200-205 nm光谱区域中多个波长处的光解-速度图成像研究

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A study of the photodissociation dynamics of NO2 in the 200-205 nm region using resonance enhanced multiphoton ionization (REMPI) in conjunction with the velocity map imaging technique is presented. We chose this region because it allowed the use of a single laser to photodissociate the NO2 molecule and probe both the O(D-1(2)) fragment using (2+1) REMPI via the 3p'P-1(1) state at 2 x205.47 nm and the 3p'F-1(3) state at 2 x203.5 nm, and the O(P-3(J)) fragments using (2+1) REMPI via the 4p P-3(J) states around 2 x similar to 200 nm. Translational energy and angular distributions are extracted from the O(D-1) and O(P-3) product images. A growth in the population of highly excited vibrational levels of the NO X((II)-I-2) co-fragment is found as the dissociation wavelength decreases. These are compared with similar trends observed previously for other triatomic O-atom containing molecules. Detailed information on the electronic angular momentum alignment of the D-1(2) state is obtained from analysis of the polarization sensitivity of the O(D-1) images using the two resonant intermediate states. The angular dependence of the potential energy in the exit channels is examined using long-range quadrupole-dipole and quadrupole-quadrupole interaction terms, from which molecular-frame multipole moments of the total angular momentum of the recoiling O atoms have been calculated. Comparison with the experimentally derived multipole moments is used to help provide insight into the dissociation mechanism.
机译:提出了使用共振增强多光子电离(REMPI)结合速度图成像技术对200-205 nm区域中NO2的光解离动力学的研究。我们选择该区域是因为它允许使用单个激光使NO2分子光解离,并通过3p'P-1(1)状态使用(2 + 1)REMPI探测两个O(D-1(2))片段在2 x205.47 nm处处于3p'F-1(3)状态,在2 x203.5 nm处处于3p'F-1(3)状态,并且使用(2 + 1)REMPI通过4p P-3( J)表示大约2 x类似于200 nm。从O(D-1)和O(P-3)产品图像中提取平移能量和角度分布。发现随着解离波长的减小,NO X((II)-I-2)共碎片的高激发振动能级的增长。将这些与先前观察到的其他含三原子O原子的分子的相似趋势进行了比较。有关D-1(2)状态的电子角动量对准的详细信息,是通过使用两个共振中间状态对O(D-1)图像的偏振灵敏度进行分析而获得的。使用远距离四极子-偶极子和四极子-四极子相互作用项来检验出口通道中势能的角度依赖性,由此计算了反冲O原子的总角动量的分子框架多极矩。与实验得出的多极矩进行比较可帮助您深入了解解离机理。

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