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An introduction to the atomic and radiation physics of plasmas

Plasmas comprise more than 99% of the observable universe. They are important in many technologies and are key potential sources for fusion power. Atomic and radiation physics is critical for the diagnosis, observation and simulation of astrophysical and laboratory plasmas, and plasma physicists wor...

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Detalles Bibliográficos
Autor principal: Tallents, G J
Lenguaje:eng
Publicado: Cambridge University Press 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1017/9781108303538
http://cds.cern.ch/record/2310392
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author Tallents, G J
author_facet Tallents, G J
author_sort Tallents, G J
collection CERN
description Plasmas comprise more than 99% of the observable universe. They are important in many technologies and are key potential sources for fusion power. Atomic and radiation physics is critical for the diagnosis, observation and simulation of astrophysical and laboratory plasmas, and plasma physicists working in a range of areas from astrophysics, magnetic fusion, and inertial fusion utilise atomic and radiation physics to interpret measurements. This text develops the physics of emission, absorption and interaction of light in astrophysics and in laboratory plasmas from first principles using the physics of various fields of study including quantum mechanics, electricity and magnetism, and statistical physics. Linking undergraduate level atomic and radiation physics with the advanced material required for postgraduate study and research, this text adopts a highly pedagogical approach and includes numerous exercises within each chapter for students to reinforce their understanding of the key concepts.
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spelling cern-23103922021-04-21T18:52:37Zdoi:10.1017/9781108303538http://cds.cern.ch/record/2310392engTallents, G JAn introduction to the atomic and radiation physics of plasmasOther Fields of PhysicsAstrophysics and AstronomyPlasmas comprise more than 99% of the observable universe. They are important in many technologies and are key potential sources for fusion power. Atomic and radiation physics is critical for the diagnosis, observation and simulation of astrophysical and laboratory plasmas, and plasma physicists working in a range of areas from astrophysics, magnetic fusion, and inertial fusion utilise atomic and radiation physics to interpret measurements. This text develops the physics of emission, absorption and interaction of light in astrophysics and in laboratory plasmas from first principles using the physics of various fields of study including quantum mechanics, electricity and magnetism, and statistical physics. Linking undergraduate level atomic and radiation physics with the advanced material required for postgraduate study and research, this text adopts a highly pedagogical approach and includes numerous exercises within each chapter for students to reinforce their understanding of the key concepts.Cambridge University Pressoai:cds.cern.ch:23103922018
spellingShingle Other Fields of Physics
Astrophysics and Astronomy
Tallents, G J
An introduction to the atomic and radiation physics of plasmas
title An introduction to the atomic and radiation physics of plasmas
title_full An introduction to the atomic and radiation physics of plasmas
title_fullStr An introduction to the atomic and radiation physics of plasmas
title_full_unstemmed An introduction to the atomic and radiation physics of plasmas
title_short An introduction to the atomic and radiation physics of plasmas
title_sort introduction to the atomic and radiation physics of plasmas
topic Other Fields of Physics
Astrophysics and Astronomy
url https://dx.doi.org/10.1017/9781108303538
http://cds.cern.ch/record/2310392
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