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氖团簇蒸发的相空间理论:量子效应的作用。

Phase space theory of evaporation in neon clusters: the role of quantum effects.

机构信息

LASIM, Université Claude Bernard Lyon 1 and CNRS UMR 5579, Bat. A. Kastler, 43 Bd du 11 novembre 1918, F69622 Villeurbanne, France.

出版信息

J Phys Chem A. 2009 Dec 31;113(52):14352-63. doi: 10.1021/jp903282b.

Abstract

Unimolecular evaporation of neon clusters containing between 14 and 148 atoms is theoretically investigated in the framework of phase space theory. Quantum effects are incorporated in the vibrational densities of states, which include both zero-point and anharmonic contributions, and in the possible tunneling through the centrifugal barrier. The evaporation rates, kinetic energy released, and product angular momentum are calculated as a function of excess energy or temperature in the parent cluster and compared to the classical results. Quantum fluctuations are found to generally increase both the kinetic energy released and the angular momentum of the product, but the effects on the rate constants depend nontrivially on the excess energy. These results are interpreted as due to the very few vibrational states available in the product cluster when described quantum mechanically. Because delocalization also leads to much narrower thermal energy distributions, the variations of evaporation observables as a function of canonical temperature appear much less marked than in the microcanonical ensemble. While quantum effects tend to smooth the caloric curve in the product cluster, the melting phase change clearly keeps a signature on these observables. The microcanonical temperature extracted from fitting the kinetic energy released distribution using an improved Arrhenius form further suggests a backbending in the quantum Ne(13) cluster that is absent in the classical system. Finally, in contrast to delocalization effects, quantum tunneling through the centrifugal barrier does not play any appreciable role on the evaporation kinetics of these rather heavy clusters.

摘要

在相空间理论的框架内,理论上研究了含有 14 到 148 个原子的氖团簇的单分子蒸发。量子效应被纳入振动态密度中,其中包括零点和非谐贡献,以及可能通过离心势垒的隧道。蒸发率、释放的动能和产物角动量被计算为母体团簇的过剩能量或温度的函数,并与经典结果进行比较。量子涨落通常会增加释放的动能和产物的角动量,但对速率常数的影响在很大程度上取决于过剩能量。这些结果可以解释为由于在量子力学中描述产物团簇中可用的振动状态非常少。由于离域化也导致了更窄的热能分布,蒸发观测值随正则温度的变化比在微正则系综中明显小得多。虽然量子效应往往会使产物团簇中的热容曲线平滑化,但熔化相变显然在这些观测值上留下了印记。使用改进的 Arrhenius 形式拟合释放的动能分布后提取的微正则温度进一步表明,在量子 Ne(13)团簇中存在经典体系中不存在的回弯。最后,与离域化效应相反,通过离心势垒的量子隧道在这些相当重的团簇的蒸发动力学中没有起到任何重要作用。

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