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A01=Luciano Maiani
A01=Omar Benhar
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Author_Omar Benhar
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Relativistic Quantum Mechanics: An Introduction to Relativistic Quantum Fields

English

By (author): Luciano Maiani Omar Benhar

Written by two of the most prominent leaders in particle physics, Relativistic Quantum Mechanics: An Introduction to Relativistic Quantum Fields provides a classroom-tested introduction to the formal and conceptual foundations of quantum field theory. Designed for advanced undergraduate- and graduate-level physics students, the text only requires previous courses in classical mechanics, relativity, and quantum mechanics.

The introductory chapters of the book summarise the theory of special relativity and its application to the classical description of the motion of a free particle and a field. The authors then explain the quantum formulation of field theory through the simple example of a scalar field described by the KleinGordon equation as well as its extension to the case of spin ½ particles described by the Dirac equation. They also present the elements necessary for constructing the foundational theories of the standard model of electroweak interactions, namely quantum electrodynamics and the Fermi theory of neutron beta decay. Many applications to quantum electrodynamics and weak interaction processes are thoroughly analysed. The book also explores the timely topic of neutrino oscillations.

Logically progressing from the fundamentals to recent discoveries, this textbook provides students with the essential foundation to study more advanced theoretical physics and elementary particle physics. It will help them understand the theory of electroweak interactions and gauge theories.

View the second and third books in this collection: Electroweak Interactions and An Introduction to Gauge Theories.

Key Features of the new edition:

Besides a general revision of text and formulae, three new chapters have been added.

· Chapter 17 introduces and discusses double beta decay processes with and without neutrino emission, the latter being the only process able to determine the Dirac or Majorana nature of the neutrino (discussed in Chapter 13). A discussion of the limits to the Majorana neutrino mass obtained recently in several underground laboratories is included.

· Chapter 18 illustrates the calculation of the mass spectrum of quarkonia (mesons composed by a pair of heavy, charm or beauty quarks), in analogy with the positronium spectrum discussed in Chapter 12. This calculation has put into evidence the existence of unexpected states and has led to the new field of exotic hadrons, presently under active theoretical and experimental scrutiny.

· Chapter 19 illustrates the Born-Oppenheimer approximation, extensively used in the computation of simple molecules, and its application to the physics of exotic hadrons containing a pair of heavy quarks, with application to the recently observed doubly charmed baryons.

This eBook was published Open Access with funding support from the Sponsoring Consortium for Open Access Publishing in Particle Physics (SCOAP3).

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A01=Luciano MaianiA01=Omar BenharAge Group_UncategorizedAuthor_Luciano MaianiAuthor_Omar Benharautomatic-updateCategory1=Non-FictionCategory=PBWCategory=PHFCCategory=PHMCategory=PHPCategory=PHQCategory=PSACOP=United KingdomDelivery_Pre-orderLanguage_EnglishPA=Not yet availablePrice_€50 to €100PS=Forthcomingsoftlaunch

Will deliver when available. Publication date 22 Oct 2024

Product Details
  • Dimensions: 156 x 234mm
  • Publication Date: 22 Oct 2024
  • Publisher: Taylor & Francis Ltd
  • Publication City/Country: United Kingdom
  • Language: English
  • ISBN13: 9781032565941

About Luciano MaianiOmar Benhar

Luciano Maiani born in 1941 is emeritus professor of theoretical physicsat the University of Rome La Sapienza and author of more than two hundredscienti_c publications on the theoretical physics of elementary particles.He together with S. Glashow and J. Iliopoulos made the prediction of a newfamily of particles those with charm which form an essential part of theuni_ed theory of the weak and electromagnetic forces. He has been presidentof the Italian Institute for Nuclear Physics (INFN) Director-General ofCERN in Geneva and president of the Italian National Council for Research(CNR). He promoted the development of the Virgo Observatory for gravitationalwave detection the neutrino beam from CERN to Gran Sasso and atCERN directed the crucial phases of the construction of the Large HadronCollider. He has taught and worked in numerous foreign institutes. He washead of the theoretical physics department at the University of Rome LaSapienza from 1976 to 1984 and held the chair of theoretical physics from1984 to 2011. He is a member of the Italian Lincean Academy and a Fellowof the American Physical Society.Omar Benhar born in 1953 is an INFN research director and teaches gaugetheories at the University of Rome La Sapienza. He has worked extensivelyin the USA as visiting professor at the University of Illinois and the OldDominion University as well as associate scientist at the Thomas Je_ersonNational Accelerator Facility. Since 2013 he has served as an adjunct professorat the Centre for Neutrino Physics of Virginia Polytechnic Institute andState University. He is the author of more than a hundred scienti_c paperson the theory of many-particle systems the structure of compact stars andelectroweak interactions of nuclei.

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