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机构地区:[1]Department of Physics,Shanghai Jiao Tong University [2]Department of Physics and Key Laboratory of Atomic and Molecular Nanoseiences of Chinese Education Ministry,Tsinghua University [3]Department of Physics and Key Laboratory of Atomic and Molecular Nanosciences of Chinese Education Ministry,Tsinghua University
出 处:《Plasma Science and Technology》2010年第3期335-340,共6页等离子体科学和技术(英文版)
基 金:supported by Ministry of Science and Technology and Ministry of Education of China;the Key grant Project of Chinese Ministry of Education (No.306020);National Natural Science Foundation of China (Nos. 10734040, 10905040);the National High-Tech ICF Committee in China and the Yin-He Super-computer Center, Institute of Applied Physics and Mathematics, Beijing, China;National Basic Research Program of China (No.2006CB921468)
摘 要:In order to provide abundant atomic data for fusion research in the stage of precision physics, a scenario, being a combination of indispensable theoretical calculations and bench-mark experimental measurements, is proposed. Such abundant atomic data are compiled mainly by theoretical calculations. Accuracies of such abundant data (i.e., atomic energy levels and cor- responding cross sections) are ascertained only by a finite number of bench-mark experimental measurements based on analytical calculation of scattering matrices.In order to provide abundant atomic data for fusion research in the stage of precision physics, a scenario, being a combination of indispensable theoretical calculations and bench-mark experimental measurements, is proposed. Such abundant atomic data are compiled mainly by theoretical calculations. Accuracies of such abundant data (i.e., atomic energy levels and cor- responding cross sections) are ascertained only by a finite number of bench-mark experimental measurements based on analytical calculation of scattering matrices.
关 键 词:R-matrix type methods electron-ion collision full-relativistic calculations
分 类 号:TL61[核科学技术—核技术及应用]
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