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内容説明
This book presents a new approach to introductory graduate courses on atomic structure. The author’s approach utilizes conceptually powerful semiclassical modeling methods, and demonstrates the degree to which the Maslov-indexed EBK quantization elucidates the quantum mechanical formulation of level energies and lifetimes. It merges this with an update and extension of semiempirical data systematizations developed by Bengt Edl-n to describe complex atoms, and adapts them to include the specification of lifetimes. The text emphasizes the historical basis of the nomenclature and methodologies of spectroscopy. However, interaction mechanisms are presented deductively, based on quantum mechanical and field theoretical models, rather than tracing their indirect paths of discovery. Many worked examples provide applications to areas such as astrophysics, hyperfine structure, and coherent anisotropic excitation. The book presents a firm foundation for specialists in atomic physics, as well as a capstone application for specialists in astrophysics, chemistry, condensed matter, and other related fields.
Book Description
Lorenzo Curtis offers a new conceptual approach to atomic structure that utilizes conceptual semiclassical models to introduce empirical systematizations of measured data. These models reveal the dynamical behavior of the various interactions that specify the energies and lifetimes of complex atoms. Curtis emphasizes the historical basis of the field as well as the relationship to modern fundamental theory. He also includes many solved problems that provide connections with astrophysics, chemistry, condensed matter, and other related fields.
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