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Coincident velocity map image reconstruction illustrated by the single-photon valence photoionisation of CF3SF5

机译:通过CF3SF5的单光子价光激激,由CF3SF5的单光子价光激励说明的重合速度映射图像重建

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Velocity map imaging offers high energy resolution and collection efficiency of the steady flux of photoelectrons and ions in continuous photoionisation experiments. In this proof- of- principle work, we show by the photoionisation of trifluoromethyl sulphur pentafluoride, CF3SF5, that the four- dimensional problem of reconstructing coincident velocity map images of electrons and ions of certain mass can be addressed by separating the energy distribution from the angular anisotropy. The energy spectrum is predominantly determined by the radial distribution of the image, whereas laboratory frame angular anisotropies are revealed based on the radial distribution of the image multiplied with a 2nd-degree Legendre polynomial. The reconstruction yields the energy correlation between the photoion and the photoelectron characteristic of the photoelectron spectrum and the kinetic energy release. The angular anisotropy beta-parameter maps of the photoelectrons and photoions are also obtained as 2D functions of the electron and ion kinetic energies. For photoionisation of CF3SF5, the energy correlation reveals suprastatistical kinetic energy release (KER) in CF3+ production in the ground cationic (X) over tilde (+) state, but statistical KER in the excited (A) over tilde (+) and (B) over tilde (+) state bands. Although the photoelectron distribution is isotropic, the photoion anisotropy in the energy range of the (X) over tilde (+) state speaks for prompt dissociation after preferential ionisation of CF3SF5 molecules aligned with the polarisation vector of the synchrotron radiation. The angular dependence of the photoionisation cross section is confirmed by ab initio calculations for vertical ionisation.
机译:速度映射成像在连续的光激酶实验中提供高能量分辨率和光电子和离子的稳定通量的收集效率。在该原则上的原则上,我们通过五氟甲基硫化硫化物,CF3SF5的光激酶显示,重建电子和离子的重建速度映射图像的四维问题可以通过将能量分布分离出来来解决角度各向异性。能谱主要由图像的径向分布决定,而基于图像的径向分布乘以2nd-degete Legendre多项式的实验室框架角各向异性。重建产生光电子光谱的光电和光电子特性与动能释放之间的能量相关性。还获得光电子和光相对的角偏相物β-参数图作为电子和离子动能的2D功能。对于CF3SF5的光激酶,能量相关在地面阳离子(x)中的CF3 +生产中的统计学动能释放(Ker)揭示了Tilde(+)状态,但在Tilde(a)上的统计ker(+)和(b )通过波浪(+)状态乐队。尽管光电子分布是各向同性的,但是在波格尔(+)状态(+)状态的(X)上的能量范围内的光电各向异性在与同步辐射的偏振载体对齐的CF3SF5分子的优先电离之后,言语是为了及时解离。通过AB Initio计算来证实光离析横截面的角度依赖性用于垂直电离。

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