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Quantum state resolved scattering dynamics of F+HCl - HF(v,J)+Cl

机译:F + HCl-> HF(v,J)+ Cl的量子态解析散射动力学

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State-to-state reaction dynamics of the reaction F+HCl -> HF(v,J)+Cl have been studied under single-collision conditions using an intense discharge F atom source in crossed supersonic molecular beams at E-com=4.3(1.3) kcal/mol. Nascent HF product is monitored by shot-noise limited direct infrared laser absorption, providing quantum state distributions as well as additional information on kinetic energy release from high resolution Dopplerimetry. The vibrational distributions are highly inverted, with 34(4)%, 44(2)%, and 8(1)% of the total population in upsilon(HF)=1, 2, and 3, respectively, consistent with predominant energy release into the newly formed bond. However, there is a small [14(1)%] but significant formation channel into the upsilon(HF)=0 ground state, which is directly detectable for the first time via direct absorption methods. Of particular dynamical interest, both the HF(upsilon=2,J) and HF(upsilon=1,J) populations exhibit strongly bimodal J distributions. These results differ significantly from previous flow and arrested-relaxation studies and may signal the presence of microscopic branching in the reaction dynamics. (c) 2007 American Institute of Physics.
机译:利用强放电F原子源在E-com = 4.3的交叉超声分子束中使用强放电F原子源,研究了在单碰撞条件下反应F + HCl→HF(v,J)+ Cl的状态转换动力学1.3)大卡/摩尔。通过限制散粒噪声的直接红外激光吸收来监测新生的HF产品,从而提供量子态分布以及有关高分辨率多普勒光度法释放动能的更多信息。振动分布高度倒置,upsilon(HF)分别占总人口的34(4)%,44(2)%和8(1)%,与主要的能量释放相一致进入新形成的债券。但是,有一个很小的[14(1)%],但是进入upsilon(HF)= 0基态的形成通道很明显,这可通过直接吸收方法首次直接检测到。特别具有动力学意义的是,HF(upsilon = 2,J)和HF(upsilon = 1,J)种群均表现出强烈的双峰J分布。这些结果与以前的流动和停滞松弛研究显着不同,并且可能表明反应动力学中存在微观分支。 (c)2007年美国物理研究所。

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