Condensed Matter Systems Exposed to Radiation: Multiscale Theory, Simulations, and Experiment

领域(数学) 纳米技术 化学 多尺度建模 生化工程 统计物理学 数据科学 管理科学 计算机科学 物理 材料科学 工程类 计算化学 数学 纯数学
作者
Andrey V. Solov’yov,Alexey V. Verkhovtsev,N. J. Mason,Richard A. Amos,Ilko Bald,Gérard Baldacchino,B. Dromey,Martin Falk,Juraj Fedor,Luca Gerhards,Michael Hausmann,Georg Hildenbrand,Miloš Hrabovský,S. Kadlec,Jaroslav Kočišek,F. Lépine,Siyi Ming,A. Nisbet,Kate Ricketts,Leo Sala,Thomas Schlathölter,Andrew E. H. Wheatley,Ilia A. Solov’yov
出处
期刊:Chemical Reviews [American Chemical Society]
标识
DOI:10.1021/acs.chemrev.3c00902
摘要

This roadmap reviews the new, highly interdisciplinary research field studying the behavior of condensed matter systems exposed to radiation. The Review highlights several recent advances in the field and provides a roadmap for the development of the field over the next decade. Condensed matter systems exposed to radiation can be inorganic, organic, or biological, finite or infinite, composed of different molecular species or materials, exist in different phases, and operate under different thermodynamic conditions. Many of the key phenomena related to the behavior of irradiated systems are very similar and can be understood based on the same fundamental theoretical principles and computational approaches. The multiscale nature of such phenomena requires the quantitative description of the radiation-induced effects occurring at different spatial and temporal scales, ranging from the atomic to the macroscopic, and the interlinks between such descriptions. The multiscale nature of the effects and the similarity of their manifestation in systems of different origins necessarily bring together different disciplines, such as physics, chemistry, biology, materials science, nanoscience, and biomedical research, demonstrating the numerous interlinks and commonalities between them. This research field is highly relevant to many novel and emerging technologies and medical applications.

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