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Nuclear lattice effective field theo...
~
Lahde, Timo A.
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Nuclear lattice effective field theory = an introduction /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Nuclear lattice effective field theory/ by Timo A. Lahde, Ulf-G. MeiBner.
Reminder of title:
an introduction /
Author:
Lahde, Timo A.
other author:
MeiBner, Ulf-G.
Published:
Cham :Springer International Publishing : : 2019.,
Description:
xi, 396 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
Introduction to Effective Field Theory -- Nuclear Forces in Chiral EFT -- Lattice Formulations -- Lattice Chiral Effective Field Theory -- Two and Three Nucleons on the Lattice -- Lattice Monte Carlo -- LIght and Medium-Mass Nuclei on the Lattice -- Further Developments -- Notations and Conventions -- Basics of the Nucleon-Nucleon Interaction -- Study of Rotational Symmetry Breaking Effects in an A Cluster Model -- Monte Carlo Sampling -- Hybrid Monte Carlo Action and Force -- Monte Carlo Calculation of Observables.
Contained By:
Springer eBooks
Subject:
Lattice field theory. -
Online resource:
https://doi.org/10.1007/978-3-030-14189-9
ISBN:
9783030141899
Nuclear lattice effective field theory = an introduction /
Lahde, Timo A.
Nuclear lattice effective field theory
an introduction /[electronic resource] :by Timo A. Lahde, Ulf-G. MeiBner. - Cham :Springer International Publishing :2019. - xi, 396 p. :ill. (some col.), digital ;24 cm. - Lecture notes in physics,v.9570075-8450 ;. - Lecture notes in physics ;v.957..
Introduction to Effective Field Theory -- Nuclear Forces in Chiral EFT -- Lattice Formulations -- Lattice Chiral Effective Field Theory -- Two and Three Nucleons on the Lattice -- Lattice Monte Carlo -- LIght and Medium-Mass Nuclei on the Lattice -- Further Developments -- Notations and Conventions -- Basics of the Nucleon-Nucleon Interaction -- Study of Rotational Symmetry Breaking Effects in an A Cluster Model -- Monte Carlo Sampling -- Hybrid Monte Carlo Action and Force -- Monte Carlo Calculation of Observables.
This primer begins with a brief introduction to the main ideas underlying Effective Field Theory (EFT) and describes how nuclear forces are obtained from first principles by introducing a Euclidean space-time lattice for chiral EFT. It subsequently develops the related technical aspects by addressing the two-nucleon problem on the lattice and clarifying how it fixes the numerical values of the low-energy constants of chiral EFT. In turn, the spherical wall method is introduced and used to show how improved lattice actions render higher-order corrections perturbative. The book also presents Monte Carlo algorithms used in actual calculations. In the last part of the book, the Euclidean time projection method is introduced and used to compute the ground-state properties of nuclei up to the mid-mass region. In this context, the construction of appropriate trial wave functions for the Euclidean time projection is discussed, as well as methods for determining the energies of the low-lying excitations and their spatial structure. In addition, the so-called adiabatic Hamiltonian, which allows nuclear reactions to be precisely calculated, is introduced using the example of alpha-alpha scattering. In closing, the book demonstrates how Nuclear Lattice EFT can be extended to studies of unphysical values of the fundamental parameters, using the triple-alpha process as a concrete example with implications for the anthropic view of the Universe. Nuclear Lattice Effective Field Theory offers a concise, self-contained, and introductory text suitable for self-study use by graduate students and newcomers to the field of modern computational techniques for atomic nuclei and nuclear reactions.
ISBN: 9783030141899
Standard No.: 10.1007/978-3-030-14189-9doiSubjects--Topical Terms:
894045
Lattice field theory.
LC Class. No.: QC793.3.F5 / L865 2019
Dewey Class. No.: 530.14
Nuclear lattice effective field theory = an introduction /
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Introduction to Effective Field Theory -- Nuclear Forces in Chiral EFT -- Lattice Formulations -- Lattice Chiral Effective Field Theory -- Two and Three Nucleons on the Lattice -- Lattice Monte Carlo -- LIght and Medium-Mass Nuclei on the Lattice -- Further Developments -- Notations and Conventions -- Basics of the Nucleon-Nucleon Interaction -- Study of Rotational Symmetry Breaking Effects in an A Cluster Model -- Monte Carlo Sampling -- Hybrid Monte Carlo Action and Force -- Monte Carlo Calculation of Observables.
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This primer begins with a brief introduction to the main ideas underlying Effective Field Theory (EFT) and describes how nuclear forces are obtained from first principles by introducing a Euclidean space-time lattice for chiral EFT. It subsequently develops the related technical aspects by addressing the two-nucleon problem on the lattice and clarifying how it fixes the numerical values of the low-energy constants of chiral EFT. In turn, the spherical wall method is introduced and used to show how improved lattice actions render higher-order corrections perturbative. The book also presents Monte Carlo algorithms used in actual calculations. In the last part of the book, the Euclidean time projection method is introduced and used to compute the ground-state properties of nuclei up to the mid-mass region. In this context, the construction of appropriate trial wave functions for the Euclidean time projection is discussed, as well as methods for determining the energies of the low-lying excitations and their spatial structure. In addition, the so-called adiabatic Hamiltonian, which allows nuclear reactions to be precisely calculated, is introduced using the example of alpha-alpha scattering. In closing, the book demonstrates how Nuclear Lattice EFT can be extended to studies of unphysical values of the fundamental parameters, using the triple-alpha process as a concrete example with implications for the anthropic view of the Universe. Nuclear Lattice Effective Field Theory offers a concise, self-contained, and introductory text suitable for self-study use by graduate students and newcomers to the field of modern computational techniques for atomic nuclei and nuclear reactions.
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Physics and Astronomy (Springer-11651)
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EB QC793.3.F5 L865 2019
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