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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Liouville-space R-matrix-Floquet description of atomic radiative processes involving autoionizing states in the presence of intense electromagnetic fields
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Liouville-space R-matrix-Floquet description of atomic radiative processes involving autoionizing states in the presence of intense electromagnetic fields

机译:Liouville-空间R-矩阵-Floquet描述在强电磁场中涉及自电离态的原子辐射过程

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摘要

A reduced-density-operator description is developed for coherent optical phenomena in many-electron atomic systems, utilizing a Liouville-space, multiple-mode Floquet-Fourier representation. The Liouville-space formulation provides a natural generalization of the ordinary Hilbert-space (Hamiltonian) R-matrix-Floquet method, which has been developed for multi-photon transitions and laser-assisted electron-atom collision processes. In these applications, the R-matrix-Floquet method has been demonstrated to be capable of providing an accurate representation of the complex, multi-level structure of many-electron atomic systems in bound, continuum, and autoionizing states. The ordinary Hilbert-space (Hamiltonian) formulation of the R-matrix-Floquet method has been implemented in highly developed computer programs, which can provide a non-perturbative treatment of the interaction of a classical, multiple-mode electromagnetic field with a quantum system. This quantum system may correspond to a many-electron, bound atomic system and a single continuum electron. However, including pseudo-states in the expansion of the many-electron atomic wave function can provide a representation of multiple continuum electrons. The 'dressed' many-electron atomic states thereby obtained can be used in a realistic non-perturbative evaluation of the transition probabilities for an extensive class of atomic collision and radiation processes in the presence of intense electromagnetic fields. In order to incorporate environmental relaxation and decoherence phenomena, we propose to utilize the ordinary Hilbert-space (Hamiltonian) R-matrix-Floquet method as a starting-point for a Liouville-space (reduced-density-operator) formulation. To illustrate how the Liouville-space R-matrix-Floquet formulation can be implemented for coherent atomic radiative processes, we discuss applications to electromagnetically induced transparency, as well as to related pump-probe optical phenomena, and also to the unified description of radiative and dielectronic recombination in electron-ion beam interactions and high-temperature plasmas.
机译:利用Liouville空间,多模Floquet-Fourier表示法,为多电子原子系统中的相干光学现象开发了密度降低的算符描述。 Liouville空间公式提供了普通希尔伯特空间(Hamiltonian)R-矩阵-浮球法的自然概括,该方法已开发用于多光子跃迁和激光辅助电子-原子碰撞过程。在这些应用中,R-矩阵-浮球法已被证明能够准确地表示束缚,连续和自电离状态下多电子原子系统的复杂多级结构。 R-矩阵-浮球法的普通希尔伯特空间(Hamiltonian)公式已在高度开发的计算机程序中实现,该程序可为经典多模电磁场与量子系统之间的相互作用提供无扰动的处理。 。该量子系统可以对应于多电子束缚原子系统和单个连续电子。但是,在多电子原子波函数的展开中包含伪状态可以提供多个连续电子的表示。由此获得的“修饰的”多电子原子态可用于在存在强电磁场的情况下,针对大量原子碰撞和辐射过程的跃迁概率进行实际的非扰动评估。为了合并环境松弛和退相干现象,我们建议利用普通的希尔伯特空间(Hamiltonian)R-矩阵-浮球法作为Liouville空间(降密度算子)公式的起点。为了说明如何在相干原子辐射过程中实现Liouville-space R-矩阵-Floquet公式,我们讨论了电磁感应透明性以及相关的泵浦探针光学现象的应用,以及辐射和辐射的统一描述。电子离子束相互作用和高温等离子体中的双电子复合。

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