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反应产物成像:氢与氘的反应

Reaction product imaging: the h + d2 reaction.

作者信息

Kitsopoulos T N, Buntine M A, Baldwin D P, Zare R N, Chandler D W

出版信息

Science. 1993 Jun 11;260(5114):1605-10. doi: 10.1126/science.260.5114.1605.

Abstract

The differential cross section for the H + D(2) --> HD + D reaction has been measured using a technique called reaction product imaging. In this experiment, a photolytically produced beam of hydrogen (H) atoms crossed a beam of cold deuterium (D(2)) molecules. Product D atoms were ionized at the intersection of the two particle beams and accelerated toward a position-sensitive detector. The ion images appearing on the detector are two-dimensional projections of the three-dimensional velocity distribution of the D atom products. The reaction was studied at nominal center-of-mass collision energies of 0.54 and 1.29 electron volts. At the lower collision energy, the measured differential cross section for D atom production, summed over all final states of the HD(v,J) product, is in good agreement with recent quasi-classical trajectory calculations. At the higher collision energy, the agreement between the theoretical predictions and experimental results is less favorable.

摘要

利用一种称为反应产物成像的技术,测量了H + D(2) → HD + D反应的微分截面。在该实验中,光解产生的氢(H)原子束穿过冷氘(D(2))分子束。产物D原子在两束粒子束的交叉点处被电离,并朝着位置敏感探测器加速。出现在探测器上的离子图像是D原子产物三维速度分布的二维投影。在标称质心碰撞能量为0.54和1.29电子伏特的条件下对该反应进行了研究。在较低的碰撞能量下,对HD(v,J)产物的所有最终状态求和得到的D原子产生的测量微分截面,与最近的准经典轨迹计算结果吻合良好。在较高的碰撞能量下,理论预测与实验结果之间的吻合度较差。

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