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Titlebook: An Advanced Course in Computational Nuclear Physics; Bridging the Scales Morten Hjorth-Jensen,Maria Paola Lombardo,Ubirajar Book 2017 Spri

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發(fā)表于 2025-3-21 16:06:49 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱An Advanced Course in Computational Nuclear Physics
期刊簡稱Bridging the Scales
影響因子2023Morten Hjorth-Jensen,Maria Paola Lombardo,Ubirajar
視頻videohttp://file.papertrans.cn/155/154798/154798.mp4
發(fā)行地址Modern, up-to-date and self-contained primer on this fast evolving subject matter.Edited and authored by leading specialists in the field.Each course makes a link with actual numerical software
學科分類Lecture Notes in Physics
圖書封面Titlebook: An Advanced Course in Computational Nuclear Physics; Bridging the Scales  Morten Hjorth-Jensen,Maria Paola Lombardo,Ubirajar Book 2017 Spri
影響因子.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 mediatorsof 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 d
Pindex Book 2017
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978-3-319-53335-3Springer International Publishing AG 2017
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Morten Hjorth-Jensen,Maria Paola Lombardo,UbirajarModern, up-to-date and self-contained primer on this fast evolving subject matter.Edited and authored by leading specialists in the field.Each course makes a link with actual numerical software
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Lecture Notes in Physicshttp://image.papertrans.cn/a/image/154798.jpg
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https://doi.org/10.1007/978-3-662-42516-9 aspects of effective field theories and their application to few-body physics. In particular, we consider an effective field theory for non-relativistic particles with resonant short-range interactions where certain parts of the interaction need to be treated nonperturbatively. As an application, w
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,Die Innervation der Schilddrüse,alculations using chiral effective field theory and some recent applications. We then describe several methods for computing scattering on the lattice. After that we focus on the main goal, explaining the theory and algorithms relevant to lattice simulations of nuclear few- and many-body systems. We
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,Die Innervation der Blutgef??e,n the first part particular attention is devoted to two methods useful to account for bound state properties. They are both based on the diagonalization of the full many-body Hamiltonian matrix, but share in addition the use of similarity transformations. Transforming the bare potential into an effe
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