Investigation of thermal and collisional effects on IRMPA and IRMPD of SF6 via a combined model involving rotationally resolved coherent-incoherent interface and quasicontinuum
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引用次数: 4
Abstract
A computationally simple model incorporating a rotationally resolved interfacing scheme between the regions of coherent and incoherent excitation (3 nu 3) and rotational structure in the quasicontinuum (QC) describes the total excitation and dissociation process of SF6 in an argon buffer. The effective cross section from a particular rotational sublevel of 3 nu 3 mode is obtained from the sum of Lorentzian functions of all allowed transitions to 4 nu 3 from that particular sublevel. The many resonances in the allowed transitions cause a large decrease in the bottleneck to the transition to the QC and a shift of the spectrum to the blue compared with that in our earlier model where the interface was rotationally unresolved. Using these cross sections, an effective two-level scheme demonstrates the formation of holes in the rotational distribution of molecules in the discrete levels and their subsequent disappearance at various buffer gas pressures and for different incident laser frequencies.
一个计算简单的模型包含了准连续介质(QC)中相干和非相干激发区(3 nu 3)和旋转结构之间的旋转分辨界面方案,描述了SF6在氩气缓冲液中的总激发和解离过程。从特定的3努3模态的旋转子能级的有效横截面由所有允许的从该特定子能级跃迁到4努3的洛伦兹函数的和得到。与我们早期的模型相比,在允许的过渡中,许多共振导致向QC过渡的瓶颈大幅减少,光谱向蓝色偏移,其中界面是旋转未解析的。利用这些横截面,一个有效的双能级方案展示了在不同缓冲气体压力和不同入射激光频率下,分子在离散能级旋转分布中空穴的形成及其随后的消失。