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An Advanced Course in Computational Nuclear Physics

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Release : 2017-05-09
Genre : Science
Kind : eBook
Book Rating : 363/5 ( reviews)

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Book Synopsis An Advanced Course in Computational Nuclear Physics by : Morten Hjorth-Jensen

Download or read book An Advanced Course in Computational Nuclear Physics written by Morten Hjorth-Jensen. This book was released on 2017-05-09. Available in PDF, EPUB and Kindle. Book excerpt: This graduate-level text collects and synthesizes a series of ten lectures on the nuclear quantum many-body problem. Starting from our current understanding of the underlying forces, it presents recent advances within the field of lattice quantum chromodynamics before going on to discuss effective field theories, central many-body methods like Monte Carlo methods, coupled cluster theories, the similarity renormalization group approach, Green’s function methods and large-scale diagonalization approaches. Algorithmic and computational advances show particular promise for breakthroughs in predictive power, including proper error estimates, a better understanding of the underlying effective degrees of freedom and of the respective forces at play. Enabled by recent improvements in theoretical, experimental and numerical techniques, the state-of-the art applications considered in this volume span the entire range, from our smallest components – quarks and gluons as the mediators of the strong force – to the computation of the equation of state for neutron star matter. The lectures presented provide an in-depth exposition of the underlying theoretical and algorithmic approaches as well details of the numerical implementation of the methods discussed. Several also include links to numerical software and benchmark calculations, which readers can use to develop their own programs for tackling challenging nuclear many-body problems.

Computational Nuclear Physics 1

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Release : 2013-11-22
Genre : Science
Kind : eBook
Book Rating : 561/5 ( reviews)

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Book Synopsis Computational Nuclear Physics 1 by : K. Langanke

Download or read book Computational Nuclear Physics 1 written by K. Langanke. This book was released on 2013-11-22. Available in PDF, EPUB and Kindle. Book excerpt: A variety of standard problems in theoretical nuclear-structure physics is addressed by the well-documented computer codes presented in this book. Most of these codes were available up to now only through personal contact. The subject matter ranges from microscopic models (the shell, Skyrme-Hartree-Fock, and cranked Nilsson models) through collective excitations (RPA, IBA, and geometric model) to the relativistic impulse approximation, three-body calculations, variational Monte Carlo methods, and electron scattering. The 5 1/4'' high-density floppy disk that comes with the book contains the FORTRAN codes of the problems that are tackled in each of the ten chapters. In the text, the precise theoretical foundations and motivations of each model or method are discussed together with the numerical methods employed. Instructions for the use of each code, and how to adapt them to local compilers and/or operating systems if necessary, are included.

Computational nuclear physics

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Release : 1991
Genre : Nuclear physics
Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis Computational nuclear physics by : Karlheinz Langanke

Download or read book Computational nuclear physics written by Karlheinz Langanke. This book was released on 1991. Available in PDF, EPUB and Kindle. Book excerpt:

Nuclear Computational Science

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Release : 2010-04-15
Genre : Technology & Engineering
Kind : eBook
Book Rating : 110/5 ( reviews)

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Book Synopsis Nuclear Computational Science by : Yousry Azmy

Download or read book Nuclear Computational Science written by Yousry Azmy. This book was released on 2010-04-15. Available in PDF, EPUB and Kindle. Book excerpt: Nuclear engineering has undergone extensive progress over the years. In the past century, colossal developments have been made and with specific reference to the mathematical theory and computational science underlying this discipline, advances in areas such as high-order discretization methods, Krylov Methods and Iteration Acceleration have steadily grown. Nuclear Computational Science: A Century in Review addresses these topics and many more; topics which hold special ties to the first half of the century, and topics focused around the unique combination of nuclear engineering, computational science and mathematical theory. Comprising eight chapters, Nuclear Computational Science: A Century in Review incorporates a number of carefully selected issues representing a variety of problems, providing the reader with a wealth of information in both a clear and concise manner. The comprehensive nature of the coverage and the stature of the contributing authors combine to make this a unique landmark publication. Targeting the medium to advanced level academic, this book will appeal to researchers and students with an interest in the progression of mathematical theory and its application to nuclear computational science.

Computational Nuclear Physics 2

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Release : 2012-12-06
Genre : Science
Kind : eBook
Book Rating : 353/5 ( reviews)

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Book Synopsis Computational Nuclear Physics 2 by : K. Langanke

Download or read book Computational Nuclear Physics 2 written by K. Langanke. This book was released on 2012-12-06. Available in PDF, EPUB and Kindle. Book excerpt: Computation is essential to our modern understanding of nuclear systems. Although simple analytical models might guide our intuition, the complex ity of the nuclear many-body problem and the ever-increasing precision of experimental results require large-scale numerical studies for a quantitative understanding. Despite their importance, many nuclear physics computations remain something of a black art. A practicing nuclear physicist might be familiar with one or another type of computation, but there is no way to systemati cally acquire broad experience. Although computational methods and results are often presented in the literature, it is often difficult to obtain the working codes. More often than not, particular numerical expertise resides in one or a few individuals, who must be contacted informally to generate results; this option becomes unavailable when these individuals leave the field. And while the teaching of modern nuclear physics can benefit enormously from realistic computer simulations, there has been no source for much of the important material. The present volume, the second of two, is an experiment aimed at address ing some of these problems. We have asked recognized experts in various aspects of computational nuclear physics to codify their expertise in indi vidual chapters. Each chapter takes the form of a brief description of the relevant physics (with appropriate references to the literature), followed by a discussion of the numerical methods used and their embodiment in a FOR TRAN code. The chapters also contain sample input and test runs, as well as suggestions for further exploration.

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