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Microscopic Calculations Of Nucleon Nucleus Scattering At Intermediate Energies


Microscopic Calculations Of Nucleon Nucleus Scattering At Intermediate Energies
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Microscopic Calculations Of Nucleon Nucleus Scattering At Intermediate Energies


Microscopic Calculations Of Nucleon Nucleus Scattering At Intermediate Energies
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Author : Hugo Francisco Arellano-Sepulveda
language : en
Publisher:
Release Date : 1990

Microscopic Calculations Of Nucleon Nucleus Scattering At Intermediate Energies written by Hugo Francisco Arellano-Sepulveda and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1990 with categories.




Microscopic Calculations Of First Order Optical Potentials For Nucleon Nucleus Scattering


Microscopic Calculations Of First Order Optical Potentials For Nucleon Nucleus Scattering
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Author : Stephen P. Weppner
language : en
Publisher:
Release Date : 1997

Microscopic Calculations Of First Order Optical Potentials For Nucleon Nucleus Scattering written by Stephen P. Weppner and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1997 with Elastic scattering categories.




Ab Initio Many Body Calculations Of Nucleon Nucleus Scattering


Ab Initio Many Body Calculations Of Nucleon Nucleus Scattering
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Author :
language : en
Publisher:
Release Date : 2008

Ab Initio Many Body Calculations Of Nucleon Nucleus Scattering written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2008 with categories.


We develop a new ab initio many-body approach capable of describing simultaneously both bound and scattering states in light nuclei, by combining the resonating-group method with the use of realistic interactions, and a microscopic and consistent description of the nucleon clusters. This approach preserves translational symmetry and Pauli principle. We outline technical details and present phase shift results for neutron scattering on 3H, 4He and 1°Be and proton scattering on {sup 3,4}He, using realistic nucleon-nucleon (NN) potentials. Our A = 4 scattering results are compared to earlier ab initio calculations. We find that the CD-Bonn NN potential in particular provides an excellent description of nucleon-4He S-wave phase shifts. We demonstrate that a proper treatment of the coupling to the n-1°Be continuum is successful in explaining the parity-inverted ground state in 11Be.



Some Observations Concerning The Use Of Realistic Forces In A Microscopic Description Of The Inelastic Scattering Of Nucleons From Nuclei At Medium Energies


Some Observations Concerning The Use Of Realistic Forces In A Microscopic Description Of The Inelastic Scattering Of Nucleons From Nuclei At Medium Energies
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Author : Fred Petrovich
language : en
Publisher:
Release Date : 1970

Some Observations Concerning The Use Of Realistic Forces In A Microscopic Description Of The Inelastic Scattering Of Nucleons From Nuclei At Medium Energies written by Fred Petrovich and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1970 with Particles (Nuclear physics) categories.




Nucleon Nucleon Interaction And The Nuclear Many Body Problem The Selected Papers Of Gerald E Brown And T T S Kuo


Nucleon Nucleon Interaction And The Nuclear Many Body Problem The Selected Papers Of Gerald E Brown And T T S Kuo
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Author : Gerald E Brown
language : en
Publisher: World Scientific
Release Date : 2010-07-05

Nucleon Nucleon Interaction And The Nuclear Many Body Problem The Selected Papers Of Gerald E Brown And T T S Kuo written by Gerald E Brown and has been published by World Scientific this book supported file pdf, txt, epub, kindle and other format this book has been release on 2010-07-05 with Science categories.


This book provides a comprehensive overview of some key developments in the understanding of the nucleon-nucleon interaction and nuclear many-body theory. The main problems at the level of meson exchange physics have largely been solved, and we now have an effective nucleon-nucleon interaction, pioneered in a renormalization group formalism by several of us at Stony Brook and our colleagues at Naples, which is nearly universally accepted as the unique low-momentum interaction that includes all experimental information to date.Our present understanding of these issues is based on a multi-step development in which different scientific insights and a wide range of physical and mathematical methodologies fed into each other. It is best appreciated by looking at the ‘steps along the way’, starting with the pioneering work of Brueckner and his collaborators that was just as necessary and important as the insightful improvements to Brueckner's theory by Hans Bethe and his students. Moving on from there, microscopic methods for nuclear structure calculations using the Brueckner G-matrix, and later low-momentum nucleon interactions, were developed and applied. With their influential 1967 paper, Brown and Kuo prepared the effective theory that allowed the description of nuclear properties directly from the underlying nucleon-nucleon interaction. Later, the addition of ‘Brown-Rho scaling’ to the one-boson-exchange model deepened the understanding of nuclear matter saturation, carbon-14 dating and the structure of neutron stars.



Microscopic Calculations Of Nuclear Structure And Nuclear Correlations


Microscopic Calculations Of Nuclear Structure And Nuclear Correlations
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Author :
language : en
Publisher:
Release Date : 1992

Microscopic Calculations Of Nuclear Structure And Nuclear Correlations written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1992 with categories.


A major goal in nuclear physics is to understand how nuclear structure comes about from the underlying interactions between nucleons. This requires modelling nuclei as collections of strongly interacting particles. Using realistic nucleon-nucleon potentials, supplemented with consistent three-nucleon potentials and two-body electroweak current operators, variational Monte Carlo methods are used to calculate nuclear ground-state properties, such as the binding energy, electromagnetic form factors, and momentum distributions. Other properties such as excited states and low-energy reactions are also calculable with these methods.



Geometric Model From Microscopic Theory For Nuclear Absorption


Geometric Model From Microscopic Theory For Nuclear Absorption
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Author : Sarah John
language : en
Publisher:
Release Date : 1993

Geometric Model From Microscopic Theory For Nuclear Absorption written by Sarah John and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1993 with Absorption cross sections categories.




Advances In Nuclear Physics


Advances In Nuclear Physics
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Author : J.W. Negele
language : en
Publisher: Springer Science & Business Media
Release Date : 2012-12-06

Advances In Nuclear Physics written by J.W. Negele and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2012-12-06 with Science categories.


Recent advances in three areas of nuclear physics are addressed in this volume. The theory of the ground state of matter is fundamental to many areas of physics and, in particular, is crucial to a microscopic understanding of nuclear physics. All conclusions concerning the relevance of me sonic, nu clear isobar, and quark degrees of freedom to nuclear structure are nec essarily subject to limitations in one's ability to accurately solve the nuclear many-body problem with static two-body interactions. Thus, it is particularly significant that in recent years great advances have been made in the vari ational theory of the ground state of zero-temperature infinite matter. The first article presents a pedagogical treatment of these advances and surveys computational results for a variety of model and physical systems. The second article reviews recent progress in determining nuclear tran sition densities from inelastic electron scattering. In the past, detailed knowl edge of the charge distributions in nuclear ground states obtained from inverting elastic electron scattering data has proven extremely valuable.



Quantum Monte Carlo Calculations Of Light Nuclei


Quantum Monte Carlo Calculations Of Light Nuclei
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Author :
language : en
Publisher:
Release Date : 2002

Quantum Monte Carlo Calculations Of Light Nuclei written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2002 with categories.


Accurate quantum Monte Carlo calculations of ground and low-lying excited states of light p-shell nuclei have been made for realistic nuclear forces. These include two-nucleon potentials that reproduce nucleon-nucleon scattering data and meson-exchange three-nucleon potentials constrained to reproduce the binding energies of s-shell nuclei. At present, results for more than 40 different (J{sup {pi}};T) states in A (less-than or equal to) 10 nuclei, plus isobaric analogs, have been obtained, with an excellent reproduction of the experimental energy spectrum. These microscopic calculations show that nuclear structure, including both single-particle and clustering aspects, can be explained starting from elementary two- and three-nucleon interactions.



Introductory Nuclear Physics


Introductory Nuclear Physics
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Author : Samuel S. M. Wong
language : en
Publisher: John Wiley & Sons
Release Date : 2008-09-26

Introductory Nuclear Physics written by Samuel S. M. Wong and has been published by John Wiley & Sons this book supported file pdf, txt, epub, kindle and other format this book has been release on 2008-09-26 with Science categories.


A comprehensive, unified treatment of present-day nuclear physics-the fresh edition of a classic text/reference. "A fine and thoroughly up-to-date textbook on nuclear physics . . . most welcome." -Physics Today (on the First Edition). What sets Introductory Nuclear Physics apart from other books on the subject is its presentation of nuclear physics as an integral part of modern physics. Placing the discipline within a broad historical and scientific context, it makes important connections to other fields such as elementary particle physics and astrophysics. Now fully revised and updated, this Second Edition explores the changing directions in nuclear physics, emphasizing new developments and current research-from superdeformation to quark-gluon plasma. Author Samuel S.M. Wong preserves those areas that established the First Edition as a standard text in university physics departments, focusing on what is exciting about the discipline and providing a concise, thorough, and accessible treatment of the fundamental aspects of nuclear properties. In this new edition, Professor Wong: * Includes a chapter on heavy-ion reactions-from high-spin states to quark-gluon plasma * Adds a new chapter on nuclear astrophysics * Relates observed nuclear properties to the underlying nuclear interaction and the symmetry principles governing subatomic particles * Regroups material and appendices to make the text easier to use * Lists Internet links to essential databases and research projects * Features end-of-chapter exercises using real-world data. Introductory Nuclear Physics, Second Edition is an ideal text for courses in nuclear physics at the senior undergraduate or first-year graduate level. It is also an important resource for scientists and engineers working with nuclei, for astrophysicists and particle physicists, and for anyone wishing to learn more about trends in the field.