Correction to:伽莫窗附近的 \(^{12}\)C(\(α , \gamma\))\(^{16}\)O 截面的可计算微观理论

IF 1.7 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Few-Body Systems Pub Date : 2024-09-23 DOI:10.1007/s00601-024-01957-7
Y. Suzuki
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Correction to: Calculable Microscopic Theory for \(^{12}\)C(\(\alpha , \gamma \))\(^{16}\)O Cross Section near Gamow Window
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来源期刊
Few-Body Systems
Few-Body Systems 物理-物理:综合
CiteScore
2.90
自引率
18.80%
发文量
64
审稿时长
6-12 weeks
期刊介绍: The journal Few-Body Systems presents original research work – experimental, theoretical and computational – investigating the behavior of any classical or quantum system consisting of a small number of well-defined constituent structures. The focus is on the research methods, properties, and results characteristic of few-body systems. Examples of few-body systems range from few-quark states, light nuclear and hadronic systems; few-electron atomic systems and small molecules; and specific systems in condensed matter and surface physics (such as quantum dots and highly correlated trapped systems), up to and including large-scale celestial structures. Systems for which an equivalent one-body description is available or can be designed, and large systems for which specific many-body methods are needed are outside the scope of the journal. The journal is devoted to the publication of all aspects of few-body systems research and applications. While concentrating on few-body systems well-suited to rigorous solutions, the journal also encourages interdisciplinary contributions that foster common approaches and insights, introduce and benchmark the use of novel tools (e.g. machine learning) and develop relevant applications (e.g. few-body aspects in quantum technologies).
期刊最新文献
Investigation of Mass and Decay Characteristics of the All-light Tetraquark Analytical Solutions of the Schrödinger Equation for Two Confined Particles with the van der Waals Interaction Calculable Microscopic Theory for \(^\textbf{12}\)C(\(\alpha \), \(\gamma \))\(^\textbf{16}\)O Cross Section near Gamow Window II Algebraic Approach and Coherent States for the Modified Dirac Oscillator in Curved Spacetime with Spin and Pseudospin Symmetries Exploring Statistical Properties of Fermion-Antifermion Pairs in Magnetized Spacetime Under Non-zero Cosmology
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