Recent progress in many-body theories : proceedings of the 11th International Conference, Manchester, UK 9-13 July 2001
著者
書誌事項
Recent progress in many-body theories : proceedings of the 11th International Conference, Manchester, UK 9-13 July 2001
(Series on advances in quantum many-body theory, v. 6)
World Scientific, c2002
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注記
Includes indexes
"The Eleventh International Conference on Recent Progress in Many-Body Theories(RPMBT-11) was held at UMIST, Manchester, UK during the period 9-13 July, 2001."-pref.
内容説明・目次
内容説明
Quantum many-body theory as a discipline in its own right dates largely from the 1950's. It has developed since then to its current position as one of the cornerstones of modern theoretical physics. The field remains vibrant and active, vigorous and exciting. Its most powerful techniques are truly universal. They are constantly expanding to find new fields of application, while advances continue to be made in the more traditional areas. To commemorate the impending 80th birthdays of its two co-inventors, Firtz Coester and Hermann Kümmel, one such technique, namely the coupled cluster method, was especially highlighted at this meeting, the eleventh in the series of International Conferences on Recent Progress in Many-Body Theories. The history of the coupled cluster method as told here mirrors in many ways both the development of the entire discipline of microscopic quantum many-body theory and the history of the series of conferences. The series itself is universally recognised as being the premier series of meetings in this subject area. Its proceedings have always summarised the current state of the art through the lectures of its leading practitioners. The present volume is no exception. No serious researcher in quantum many-body theory or in any field which uses it can afford to be without this volume.
目次
- Feenberg Memorial Medal Presentation
- Strongly Correlated Condensed Matter and Low-Dimensional Systems
- Quantum Magnetism
- Phase Transitions
- Nuclear and Subnuclear Many-Body Problems
- Quantum Fluids, Superfluids and Superconductivity
- Coupled Cluster Methods.
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