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Angular momentum–scattering angle quantum correlation: a generalized deflection function

机译:角动量-散射角量子相关性:广义偏转函数

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摘要

A natural generalization of the classical deflection function, the functional dependence of the deflection angle on the angular momentum (or the impact parameter), is the joint probability density function of these two quantities, revealing the correlation between them. It provides, at a glance, detailed information about the reaction mechanisms and how changes in the impact parameter affect the product angular distribution. It is also useful to predict the presence of quantum phenomena such as interference. However, the classical angular momentum–scattering angle correlation function has a limited use whenever quantum effects become important. Rigorously speaking, there is not a quantum equivalent of the classical joint distribution, as the differential cross section depends on the coherences between the different values of J caused by the cross terms in the expansion of partial waves. In this article, we present a simple method to calculate a quantum analog of this correlation, a generalized deflection function that can shed light onto the reaction mechanism using just quantum mechanical results. Our results show that there is a very good agreement between the quantum and classical correlation functions as long as quantum effects are not all relevant. When this is not the case, it will also be shown that the quantum correlation function is most useful to observe the extent of quantum effects such as interference among different reaction mechanisms.
机译:这两个量的联合概率密度函数是经典偏转函数的自然概括,即偏转角对角动量(或冲击参数)的函数依赖性,从而揭示了它们之间的相关性。一目了然,它提供了有关反应机理以及冲击参数的变化如何影响产物角分布的详细信息。预测诸如干扰之类的量子现象的存在也很有用。然而,每当量子效应变得重要时,经典的角动量-散射角相关函数的使用就会受到限制。严格地讲,经典的联合分布没有量子等价物,因为微分横截面取决于部分波的扩展中由交叉项引起的J的不同值之间的相干性。在本文中,我们提出了一种简单的方法来计算具有这种相关性的量子模拟,这是一种广义的偏转函数,仅使用量子力学结果就可以将光投射到反应机理上。我们的结果表明,只要量子效应不是全部相关的,在量子和经典相关函数之间就有很好的一致性。如果不是这种情况,还将显示量子相关函数对于观察量子效应的程度(例如不同反应机制之间的干扰)最为有用。

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