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Tunneling of a diatomic molecule with transitional channels and molecular break-up.

机译:具有过渡通道和分子破裂的双原子分子的隧穿。

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摘要

We study a diatomic homonuclear molecule incident upon a potential barrier. We allow for transitions among bound states and for molecular break-up for a molecule incident upon the barrier in a bound state. We apply an elegant method to calculate probabilities of reflection and transmission, in bound and unbound states. In the numerical work, we use a binding potential that captures the important physical features of real potentials and a single delta barrier for the potential barrier. We showed that the probabilities of reflection and transmission in unbound states were small compared to the probabilities of reflection and transmission in bound states. We also found that the probabilities of reflection and transmission decrease for large kinetic energies. For a molecule with only one bound state, it was shown, using two different binding potentials, that the probabilities of reflection and transmission in unbound states were also small. We showed that an arbitrarily weakly-bound molecule will break up upon encountering a barrier. We also discussed a shortcoming of the results and possible resolutions. Suggestions for further studies were also presented.--P.ii.
机译:我们研究了一个潜在障碍上入射的双原子同核分子。我们允许在键合状态之间进行过渡,并允许分子以键合状态发生碰撞,从而使分子在键合状态下发生碰撞。我们使用一种优雅的方法来计算在绑定和未绑定状态下的反射和透射的概率。在数值工作中,我们使用绑定势能来捕获真实势能的重要物理特征,并使用单个增量势垒作为势垒。我们表明,与未结合状态下的反射和透射相比,未结合状态下的反射和透射的概率很小。我们还发现,对于大动能,反射和透射的概率降低。对于仅具有一个键合状态的分子,使用两种不同的键合势表明,在未键合状态下反射和透射的概率也很小。我们表明,任意弱结合的分子在遇到障碍时都会分解。我们还讨论了结果和可能解决方案的缺点。还提出了进一步研究的建议。

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  • 年度 2007
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