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Microscopic Quantum Many-Body Theories and Their Applications -

Microscopic Quantum Many-Body Theories and Their Applications

Proceedings of a European Summer School, Held at Valencia, Spain, 8–19 September 1997

Jesus Navarro, Artur Polls (Herausgeber)

Online Resource
XIII, 386 Seiten
2007
Springer Berlin (Hersteller)
9783540697879 (ISBN)
CHF 134,80 inkl. MwSt
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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.

The coupled cluster method.- Atomic and molecular applications of the coupled cluster method.- A thermal cluster-cumulant theory.- Correlated basis function theory for fermion systems.- Inhomogeneous quantum liquids: Statics, dynamics, and thermodynamics.- Some applications of correlated basis function theories in finite and infinite nuclear systems.- Monte carlo methods in quantum many-body theories.- Monte carlo calculations of nuclei.- Diffusion Monte Carlo for excited states: Application to liquid helium.

Erscheint lt. Verlag 6.5.2007
Reihe/Serie Lecture Notes in Physics
Physics and Astronomy
Physics and Astronomy (R0)
Übersetzer M. Brosche
Zusatzinfo XIII, 386 p. 4 illus.
Verlagsort Berlin
Sprache englisch
Themenwelt Naturwissenschaften Physik / Astronomie Atom- / Kern- / Molekularphysik
Schlagworte Cluster • Diffusion • Dynamics • fundamental interaction • Monte Carlo Method • thermodynamics
ISBN-13 9783540697879 / 9783540697879
Zustand Neuware
Informationen gemäß Produktsicherheitsverordnung (GPSR)
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