Particle Accelerator Physics [electronic resource] : Basic Principles and Linear Beam Dynamics /

Particle Accelerator Physics is designed to serve as an introduction to the field of high-energy particle accelerator physics and particle-beam dynamics. It covers the dynamics of relativistic particle beams, basics of particle guidance and focusing, lattice design, characteristics of beam transport systems and circular accelerators. Particle-beam optics is treated in the linear approximation including sextupoles to correct for chromatic aberrations. Perturbations to linear beam dynamics are analyzed in detail and correction measures are discussed. Basic lattice design features and building blocks leading to the design of more complicated beam transport systems and circular accelerators are studied. Characteristics of synchrotron radiation and quantum effects due to the statistical emission of photons on particle trajectories are derived and applied to determine particle-beam parameters. The discussions specifically concentrate on relativistic particle beams and the physics of beam optics in beam transport systems and circular accelerators such as synchrotrons and storage rings. This book is aimed at students and scientists who are interested in an introduction to particle-beam optics and accelerator physics. It provides a general understanding of particle-beam physics and forms a broad basis for further, more detailed studies of nonlinear beam dynamics and associated accelerator physics problems to be discussed in a subsequent volume.

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Main Authors: Wiedemann, Helmut. author., SpringerLink (Online service)
Format: Texto biblioteca
Language:eng
Published: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 1993
Subjects:Physics., Particle acceleration., Particle Acceleration and Detection, Beam Physics., Optics, Lasers, Photonics, Optical Devices.,
Online Access:http://dx.doi.org/10.1007/978-3-662-02903-9
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spelling KOHA-OAI-TEST:2274492018-07-31T00:08:33ZParticle Accelerator Physics [electronic resource] : Basic Principles and Linear Beam Dynamics / Wiedemann, Helmut. author. SpringerLink (Online service) textBerlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer,1993.engParticle Accelerator Physics is designed to serve as an introduction to the field of high-energy particle accelerator physics and particle-beam dynamics. It covers the dynamics of relativistic particle beams, basics of particle guidance and focusing, lattice design, characteristics of beam transport systems and circular accelerators. Particle-beam optics is treated in the linear approximation including sextupoles to correct for chromatic aberrations. Perturbations to linear beam dynamics are analyzed in detail and correction measures are discussed. Basic lattice design features and building blocks leading to the design of more complicated beam transport systems and circular accelerators are studied. Characteristics of synchrotron radiation and quantum effects due to the statistical emission of photons on particle trajectories are derived and applied to determine particle-beam parameters. The discussions specifically concentrate on relativistic particle beams and the physics of beam optics in beam transport systems and circular accelerators such as synchrotrons and storage rings. This book is aimed at students and scientists who are interested in an introduction to particle-beam optics and accelerator physics. It provides a general understanding of particle-beam physics and forms a broad basis for further, more detailed studies of nonlinear beam dynamics and associated accelerator physics problems to be discussed in a subsequent volume.Particle Accelerator Physics is designed to serve as an introduction to the field of high-energy particle accelerator physics and particle-beam dynamics. It covers the dynamics of relativistic particle beams, basics of particle guidance and focusing, lattice design, characteristics of beam transport systems and circular accelerators. Particle-beam optics is treated in the linear approximation including sextupoles to correct for chromatic aberrations. Perturbations to linear beam dynamics are analyzed in detail and correction measures are discussed. Basic lattice design features and building blocks leading to the design of more complicated beam transport systems and circular accelerators are studied. Characteristics of synchrotron radiation and quantum effects due to the statistical emission of photons on particle trajectories are derived and applied to determine particle-beam parameters. The discussions specifically concentrate on relativistic particle beams and the physics of beam optics in beam transport systems and circular accelerators such as synchrotrons and storage rings. This book is aimed at students and scientists who are interested in an introduction to particle-beam optics and accelerator physics. It provides a general understanding of particle-beam physics and forms a broad basis for further, more detailed studies of nonlinear beam dynamics and associated accelerator physics problems to be discussed in a subsequent volume.Physics.Particle acceleration.Physics.Particle Acceleration and Detection, Beam Physics.Optics, Lasers, Photonics, Optical Devices.Springer eBookshttp://dx.doi.org/10.1007/978-3-662-02903-9URN:ISBN:9783662029039
institution COLPOS
collection Koha
country México
countrycode MX
component Bibliográfico
access En linea
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databasecode cat-colpos
tag biblioteca
region America del Norte
libraryname Departamento de documentación y biblioteca de COLPOS
language eng
topic Physics.
Particle acceleration.
Physics.
Particle Acceleration and Detection, Beam Physics.
Optics, Lasers, Photonics, Optical Devices.
Physics.
Particle acceleration.
Physics.
Particle Acceleration and Detection, Beam Physics.
Optics, Lasers, Photonics, Optical Devices.
spellingShingle Physics.
Particle acceleration.
Physics.
Particle Acceleration and Detection, Beam Physics.
Optics, Lasers, Photonics, Optical Devices.
Physics.
Particle acceleration.
Physics.
Particle Acceleration and Detection, Beam Physics.
Optics, Lasers, Photonics, Optical Devices.
Wiedemann, Helmut. author.
SpringerLink (Online service)
Particle Accelerator Physics [electronic resource] : Basic Principles and Linear Beam Dynamics /
description Particle Accelerator Physics is designed to serve as an introduction to the field of high-energy particle accelerator physics and particle-beam dynamics. It covers the dynamics of relativistic particle beams, basics of particle guidance and focusing, lattice design, characteristics of beam transport systems and circular accelerators. Particle-beam optics is treated in the linear approximation including sextupoles to correct for chromatic aberrations. Perturbations to linear beam dynamics are analyzed in detail and correction measures are discussed. Basic lattice design features and building blocks leading to the design of more complicated beam transport systems and circular accelerators are studied. Characteristics of synchrotron radiation and quantum effects due to the statistical emission of photons on particle trajectories are derived and applied to determine particle-beam parameters. The discussions specifically concentrate on relativistic particle beams and the physics of beam optics in beam transport systems and circular accelerators such as synchrotrons and storage rings. This book is aimed at students and scientists who are interested in an introduction to particle-beam optics and accelerator physics. It provides a general understanding of particle-beam physics and forms a broad basis for further, more detailed studies of nonlinear beam dynamics and associated accelerator physics problems to be discussed in a subsequent volume.
format Texto
topic_facet Physics.
Particle acceleration.
Physics.
Particle Acceleration and Detection, Beam Physics.
Optics, Lasers, Photonics, Optical Devices.
author Wiedemann, Helmut. author.
SpringerLink (Online service)
author_facet Wiedemann, Helmut. author.
SpringerLink (Online service)
author_sort Wiedemann, Helmut. author.
title Particle Accelerator Physics [electronic resource] : Basic Principles and Linear Beam Dynamics /
title_short Particle Accelerator Physics [electronic resource] : Basic Principles and Linear Beam Dynamics /
title_full Particle Accelerator Physics [electronic resource] : Basic Principles and Linear Beam Dynamics /
title_fullStr Particle Accelerator Physics [electronic resource] : Basic Principles and Linear Beam Dynamics /
title_full_unstemmed Particle Accelerator Physics [electronic resource] : Basic Principles and Linear Beam Dynamics /
title_sort particle accelerator physics [electronic resource] : basic principles and linear beam dynamics /
publisher Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer,
publishDate 1993
url http://dx.doi.org/10.1007/978-3-662-02903-9
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