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Titlebook: Extended Density Functionals in Nuclear Structure Physics; Georgios A. Lalazissis,Peter Ring,Dario Vretenar Book 2004 Springer-Verlag Berl

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书目名称Extended Density Functionals in Nuclear Structure Physics
编辑Georgios A. Lalazissis,Peter Ring,Dario Vretenar
视频video
丛书名称Lecture Notes in Physics
图书封面Titlebook: Extended Density Functionals in Nuclear Structure Physics;  Georgios A. Lalazissis,Peter Ring,Dario Vretenar Book 2004 Springer-Verlag Berl
描述.The experimental and theoretical investigation of nuclei far from the valley of beta-stability is the main subject of modern nuclear structure research. Although the most successful nuclear structure models are purely phenomenological, they nevertheless exploit basic properties of QCD at low energies. This book focuses on the current efforts to bridge the gap between phenomenology and the principles derived from QCD using the extended density functional approach which is based on the successful DFT methods to tackle similarly complex interacting systems in molecular and condensed matter physics. Conceived as a series of pedagogical lectures, this volume addresses researchers in the field as well as postgraduate students and non-specialized scientists from related areas who seek a high-level but accessible introduction to the subject..
出版日期Book 2004
关键词Density Functional Theory; Exotic Nuclei; Nuclear Structure; Radioactive Nuclear Beams; Relativistic Nuc
版次1
doihttps://doi.org/10.1007/b95720
isbn_softcover978-3-642-05910-0
isbn_ebook978-3-540-39911-7Series ISSN 0075-8450 Series E-ISSN 1616-6361
issn_series 0075-8450
copyrightSpringer-Verlag Berlin Heidelberg 2004
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2 Covariant Effective Field Theory for Nuclear Structure and Nuclear Currents,ed here contains nucleons, pions, isoscalar scalar (.) and vector (.) fields, and isovector vector (.) fields. The theory exhibits a nonlinear realization of spontaneously broken .(2). × .(2). chiral symmetry and has three desirable features: it uses the same degrees of freedom to describe the nucle
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3 Exploring the Nucleus in the Context of Low-Energy QCD,ear matter and finite nuclei. We develop a microscopic covariant description of nuclear many-body dynamics constrained by chiral symmetry and in-medium QCD sum rules. A relativistic point-coupling model is derived, based on an effective Lagrangian with density-dependent contact interactions between
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5 Density Dependent Relativistic Field Theory,ructure. In order to conserve important fundamental principles, including Lorentz-invariance, covariance of the field equations and thermodynamical consistency, the functional form must be chosen in terms of Lorentz-scalar combinations of field operators. In DDRH theory the functional form of the ve
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8 Vacuum, Matter, and Antimatter,he possibility of producing new types of nuclear systems by implanting an antibaryon into ordinary nuclei. The structure of nuclei containing one antiproton or antilambda is investigated within the framework of a relativistic mean-field model. Self-consistent calculations predict an enhanced binding
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9 Mean Field: Relativistic versus Non-relativistic, describing nuclear ground state and excitation properties. But the reader may expect a justification for one more article on mean field models in the context of all what has already been written. The particular aim of this contribution is to establish a link to non-relativistic mean-field models an
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10 Angular Momentum Projection and Quadrupole Correlations Effects in Atomic Nuclei,ation spaces. A pedagogical theoretical introduction to the topic of symmetries restoration broken in the mean field approach as well as to the concept of generator coordinate is presented. We discuss global properties, like binding energies, two neutron separation energies and quadrupole moments, a
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