A Brief Introduction to Dispersion Relations : With Modern Applications
2019 ed.
Book Details
AI Summary
Delivery Location
Delivery fee: Select location
First, the case of two-body scattering is considered and then its contribution to other processes through final-state interactions is discussed. For two-body scattering amplitudes, the general expression for a partial-wave amplitude is derived in the approximation where the crossed channel dynamics is neglected. This is taken as the starting point for many interesting nonperturbative applications, both in the light and heavy quark sector. Subsequently crossed channel dynamics is introduced within the equations for calculating the partial-wave amplitudes. Some applications based on methods that treat crossed-channel dynamics perturbatively are discussed too.
The last part of this introductory treatment is dedicated to the further impact of scattering amplitudes on a variety of processes through final-state interactions. Several possible approaches are discussed such as the Muskhelishvili-Omnes dispersive integral equations and other closed formulae. These different formalisms are then applied in particular to the study of resonances presenting a number of challenging properties. The book ends with a chapter illustrating the use of dispersion relations in the nuclear medium for the evaluation of the energy density in nuclear matter.Get A Brief Introduction to Dispersion Relations by at the best price and quality guaranteed only at Werezi Africa's largest book ecommerce store. The book was published by Springer Nature Switzerland AG and it has pages.
Discover books you might love based on this title.
More in This Genre
Introduction to String Theory
Ksh 19,800.00
Multiple Messengers and Challenges in Astroparticle Physics
Ksh 25,200.00
An Introduction to Regge Theory and High Energy Physics
Ksh 6,150.00
Atomic Physics: Precise Measurements and Ultracold Matter
Ksh 18,000.00
Spinel and Inverse Spinel Ferrites
Ksh 28,800.00
Principles of Discrete Time Mechanics
Ksh 19,600.00