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Titlebook: Microscopic Quantum Many-Body Theories and Their Applications; Proceedings of a Eur Jesús Navarro,Artur Polls Conference proceedings 1998 S

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书目名称Microscopic Quantum Many-Body Theories and Their Applications
副标题Proceedings of a Eur
编辑Jesús Navarro,Artur Polls
视频video
丛书名称Lecture Notes in Physics
图书封面Titlebook: Microscopic Quantum Many-Body Theories and Their Applications; Proceedings of a Eur Jesús Navarro,Artur Polls Conference proceedings 1998 S
描述Quantum many-body theories have become an essential tool for all physicists. The field is interdisciplinary, predicting the properties of macroscopic matter based on the fundamental interactions between the elementary constituents. This book presents a systematic and pedagogical approach to the coupled cluster method, correlated basis function theory and Monte Carlo methods. These topics are widely recognized and provide the most powerful and widely applicable theories of all available formulations of QMBT. As the future evolution of QMBT depends to a large measure on establishing links between these different methods, the authors discuss hyprid procedures that can build even further upon the huge strengths and great advantages of each theory.
出版日期Conference proceedings 1998
关键词Monte Carlo method; cluster; diffusion; dynamics; fundamental interaction; thermodynamics
版次1
doihttps://doi.org/10.1007/BFb0104522
isbn_softcover978-3-662-14171-7
isbn_ebook978-3-540-69787-9Series ISSN 0075-8450 Series E-ISSN 1616-6361
issn_series 0075-8450
copyrightSpringer-Verlag Berlin Heidelberg 1998
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Some applications of correlated basis function theories in finite and infinite nuclear systems,on correlations. Then we study the ground state of doubly closed-shell nuclei, showing how Fermi hypernetted chain equations can be extended to these systems and presenting results for the energy and the density.
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Conference proceedings 1998matter based on the fundamental interactions between the elementary constituents. This book presents a systematic and pedagogical approach to the coupled cluster method, correlated basis function theory and Monte Carlo methods. These topics are widely recognized and provide the most powerful and wid
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A thermal cluster-cumulant theory,rand partition function is generated systematically as a thermal trace of the Boltzmann operator. Generalization of the concept of the normal ordering to cover imaginary-time path-integral based methods for partition functions offers an access to systematic nonperturbative extensions of the usual Feynman-Kleinert approximations.
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Atomic and molecular applications of the coupled cluster method,otential energy surfaces, geometries, ionization potentials and excitation energies. For atomic systems, emphasis is put on heavy atoms, where the relativistic coupled cluster scheme yields atomic transition energies with unprecedented accuracy. The nature of the ground state is investigated for som
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