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首页> 外文期刊>The Journal of Chemical Physics >Quantum state-resolved reactive scattering of F+H-2 in supersonic jets: Nascent HF(v,J) rovibrational distributions via IR laser direct absorption methods
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Quantum state-resolved reactive scattering of F+H-2 in supersonic jets: Nascent HF(v,J) rovibrational distributions via IR laser direct absorption methods

机译:超声速射流中F + H-2的量子态分辨反应散射:通过红外激光直接吸收法测量的初生HF(v,J)旋转振动分布

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Supersonically cooled discharge radical atom sources are combined with high-sensitivity IR absorption methods to investigate state-to-state reactive scattering of F + n-H-2 --> HF(upsilon, J) + H in low-density crossed supersonic jets at center-of-mass collision energies of 2.4(6) kcal/mole. The product HF(upsilon, J) is probed with full vibrational and rotational quantum state selectivity via direct absorption of a single mode (Delta nu approximate to 0.0001 cm(-1)), tunable F-center laser in the Delta upsilon = 1 fundamental manifold with near shot noise limited detection levels of 10(8) molecules/cm(3)/quantum state per pulse. The high absorption sensitivity, long mean free path lengths, and low-density conditions in the intersection region permit collision-free HF(upsilon, J) rovibrational product state distributions to be extracted for the first time. Summed over all rotational levels, the HF vibrational branching ratios are 27.0(5)%, 54.2(23)%, 18.8(32)%, and <2(2)%, respectively, into upsilon(HF) = 3:2:1:0 The nascent vibrational distributions are in good agreement with rotationally unresolved crossed-beam studies of Neumark et al. [J. Chem. Phys. 82, 3045 (1985)], as well as with full quantum close-coupled calculations of Castillo and Manolopoulos [J. Chem. Phys. 104, 6531 (1996)] on the lowest adiabatic F+H-2 potential surface of Stark and Werner [J. Chem. Phys. 104, 6515 (1996)]. At a finer level of quantum state resolution, the nascent rotational distributions match reasonably well with full quantum theoretical predictions, improving on the level of agreement between theory and experiment from early arrested relaxation studies. Nevertheless, significant discrepancies still exist between the fully quantum state-resolved experiment and theory, especially for the highest energetically allowed rotational levels. (C) 1998 American Institute of Physics. [S0021-9606(98)00545-5]. [References: 67]
机译:超声冷却的放电自由基原子源与高灵敏度红外吸收方法相结合,以研究中心低密度交叉超音速射流中F + nH-2-> HF(upsilon,J)+ H的状态间反应性散射质量碰撞能量为2.4(6)kcal / mole。通过直接吸收单模(Delta nu大约为0.0001 cm(-1)),可调谐F中心激光器在Delta upsilon = 1基本中,以完全的振动和旋转量子态选择性探测HF(upsilon,J)产品近脉冲噪声的多歧管将每个脉冲的检测水平限制为10(8)分子/ cm(3)/量子态。高的吸收灵敏度,较长的平均自由程长度和交点区域中的低密度条件允许首次提取无碰撞的HF(upsilon,J)振动产物状态分布。在所有旋转水平上求和,HF振动分支比率分别为upsilon(HF)= 3:2:27.0(5)%,54.2(23)%,18.8(32)%和<2(2)%: 1:0的新生振动分布与Neumark等人的未解决的旋转横梁研究非常吻合。 [J.化学物理82,3045(1985)],以及卡斯蒂略和马诺洛普洛斯的全量子紧密耦合计算[J.化学物理Stark and Werner的最低绝热F + H-2势面[104,6531(1996)]。化学物理104,6515(1996)]。在更好的量子态分辨率水平上,新生的旋转分布与完整的量子理论预测相当吻合,从而改善了早期逮捕的弛豫研究的理论与实验之间的一致性。然而,在完全量子态分辨的实验和理论之间仍然存在重大差异,尤其是对于能量上允许的最高旋转水平。 (C)1998美国物理研究所。 [S0021-9606(98)00545-5]。 [参考:67]

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