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Chiral Soliton Models for Baryons (Hardcover, 2008 ed.): Herbert Weigel Chiral Soliton Models for Baryons (Hardcover, 2008 ed.)
Herbert Weigel
R2,994 R1,671 Discovery Miles 16 710 Save R1,323 (44%) Ships in 12 - 17 working days

This concise research monograph introduces and reviews the concept of chiral soliton models for baryons. In these models, baryons emerge as (topological) defects of the chiral field. The many applications shed light on a number of bayron properties, ranging from static properties via nuclear resonances to even heavy ion collisions. This volume also features a number of appendices to help nonspecialist readers to follow in more detail some of the calculations in the main text.

Spectral Methods in Quantum Field Theory (Hardcover, 2009 ed.): Noah Graham, Markus Quandt, Herbert Weigel Spectral Methods in Quantum Field Theory (Hardcover, 2009 ed.)
Noah Graham, Markus Quandt, Herbert Weigel
R2,010 R1,642 Discovery Miles 16 420 Save R368 (18%) Ships in 12 - 17 working days

In this monograph we apply scattering theory methods to calculations in quantum ?eld theory, with a particular focus on properties of the quantum vacuum. These methods will provide e?cient and reliable solutions to a - riety of problems in quantum ?eld theory. Our approach will also elucidate in a concrete context many of the subtleties of quantum ?eld theory, such as divergences, regularization, and renormalization, by connecting them to more familiar results in quantum mechanics. We will use tools of scattering theory to characterize the spectrum of energyeigenstatesinapotentialbackground, hencethetermspectralmethods. This mode spectrum comprises both discrete bound states and a continuum of scattering states. We develop a powerful formalism that parameterizes the e?ects of the continuum by the density of states, which we compute from scattering data. Summing the zero-point energies of these modes gives the energy of the quantum vacuum, which is one of the central quantities we study.Althoughthemostcommonlystudiedbackgroundpotentialsarisefrom static soliton solutions to the classical equations of motion, these methods are not limited to such cases

Chiral Soliton Models for Baryons (Paperback, Softcover reprint of hardcover 1st ed. 2008): Herbert Weigel Chiral Soliton Models for Baryons (Paperback, Softcover reprint of hardcover 1st ed. 2008)
Herbert Weigel
R1,536 Discovery Miles 15 360 Ships in 10 - 15 working days

This concise research monograph introduces and reviews the concept of chiral soliton models for baryons. In these models, baryons emerge as (topological) defects of the chiral field. The many applications shed light on a number of bayron properties, ranging from static properties via nuclear resonances to even heavy ion collisions. This volume also features a number of appendices to help nonspecialist readers to follow in more detail some of the calculations in the main text.

Spectral Methods in Quantum Field Theory (Paperback, Softcover reprint of hardcover 1st ed. 2009): Noah Graham, Markus Quandt,... Spectral Methods in Quantum Field Theory (Paperback, Softcover reprint of hardcover 1st ed. 2009)
Noah Graham, Markus Quandt, Herbert Weigel
R1,510 Discovery Miles 15 100 Ships in 10 - 15 working days

In this monograph we apply scattering theory methods to calculations in quantum ?eld theory, with a particular focus on properties of the quantum vacuum. These methods will provide e?cient and reliable solutions to a - riety of problems in quantum ?eld theory. Our approach will also elucidate in a concrete context many of the subtleties of quantum ?eld theory, such as divergences, regularization, and renormalization, by connecting them to more familiar results in quantum mechanics. We will use tools of scattering theory to characterize the spectrum of energyeigenstatesinapotentialbackground, hencethetermspectralmethods. This mode spectrum comprises both discrete bound states and a continuum of scattering states. We develop a powerful formalism that parameterizes the e?ects of the continuum by the density of states, which we compute from scattering data. Summing the zero-point energies of these modes gives the energy of the quantum vacuum, which is one of the central quantities we study.Althoughthemostcommonlystudiedbackgroundpotentialsarisefrom static soliton solutions to the classical equations of motion, these methods are not limited to such cases

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