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Efficient representations of continuum states for photoionization processes from atomic and molecular targets.

机译:从原子和分子靶标进行光电离过程的连续态有效表示。

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The investigation of single and double photoionization effects in small atoms and molecules provides a means to probe fundamental quantum mechanical phenomena concerning electron correlation and interference effects. To consider these concepts accurately from first principles requires the construction of the exact final continuum states of a many body problem in atomic double photoionization and of the complicated continuum states in molecular single photoionization.;Methods designed for incorporating exterior complex scaling (ECS) have proven very successful towards accomplishing these goals, providing a rigorous framework for describing continuum states involving any number of outgoing electrons with numerical exactness. Furthermore, such methods render solutions that can be interrogated to extract the full richness of information about the photoionization process from the wave function.;This work aims to demonstrate the use of exterior complex scaling by first exactly solving the three-body breakup problem of the atomic hydride anion. H-- is the simplest atomic system and is most sensitive to electron correlation effects. The application of ECS with an efficient finite-element discrete variable representation proves quite capable and well-suited for this atomic Coulomb breakup problem.;The evolution of this framework to treat molecular problems efficiently with exactness is furthered by the design of a hybrid basis method. The incorporation of analytic Gaussian basis sets ubiquitous in bound state molecular descriptions seems natural for considering molecular continuum states. The hybrid method is described in full detail and applied to completely describe photoionization of molecular H+2 and Li+2 .;Photoionization of simple molecular systems offers significantly more complexity in the resulting angular distributions of the ejected electron as the target geometry becomes less atomic-like, i.e., as the internuclear separation increases. In this regard, investigation of photoejection from Li+2 provides a molecular environment ideal for considering the role of internuclear distance in molecular continuum states. With its relatively long equilibrium bond length of R = 5.86 bohr, the extreme target geometry of Li+2 offers the possibility of investigating interference effects caused by the photoelectron de Broglie wavelength becoming comparable with the bond length at relatively low photoejection energies. The aid of the hybrid basis in treating this problem proves substantial, providing an intuitive and robust framework for complete solution of processes involving continuum states of molecular targets.
机译:对小原子和分子中单电离和双电离作用的研究提供了一种手段来探究有关电子相关性和干扰作用的基本量子力学现象。为了从第一原理中准确地考虑这些概念,需要构造原子双光电离中的多体问题和分子单光电离中的复杂连续体状态的确切最终连续体状态。已证明设计用于结合外部复杂标度(ECS)的方法在实现这些目标方面非常成功,它提供了一个严格的框架来描述具有数值精确度的涉及任何数量的输出电子的连续态。此外,这些方法还提供了可以被质疑以从波函数中提取有关光电离过程的信息的全部信息的解决方案。这项工作旨在通过首先精确地解决三体分解的问题来演示外部复杂缩放的使用。氢原子阴离子。 H--是最简单的原子系统,对电子相关效应最敏感。具有有效的有限元离散变量表示的ECS的应用被证明非常有能力并且非常适合于此原子库仑破裂问题。;通过混合基础方法的设计,进一步发展了该框架以精确地有效处理分子问题的发展。 。结合态高斯基集在绑定态分子描述中无处不在,对于考虑分子连续态来说似乎很自然。详细介绍了该混合方法,并将其完全描述了分子H + 2和Li + 2的光电离。;简单的分子系统的光电离会随着目标几何形状变得原子性降低而使所产生的电子角分布更加复杂。 -类似,即随着核间分离的增加。在这方面,从Li + 2进行光喷射研究提供了一个理想的分子环境,可以考虑核间距在分子连续态中的作用。由于其相对较长的平衡键长R = 5.86 bohr,Li + 2的极端目标几何形状使得研究由光电子德布罗意波长引起的干涉效应的可能性变得与在相对较低的光喷射能量下的键长相当。混合基础在解决该问题方面的帮助已被证明是实质性的,它为涉及分子靶标连续态的过程的完整解决方案提供了直观而强大的框架。

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