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Synchrotron light sources and free-electron lasers: accelerator physics, instrumentation and science applications

Hardly any other discovery of the nineteenth century did have such an impact on science and technology as Wilhelm Conrad Röntgen’s seminal find of the X-rays. X-ray tubes soon made their way as excellent instruments for numerous applications in medicine, biology, materials science and testing, chemi...

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Detalles Bibliográficos
Autores principales: Jaeschke, Eberhard, Khan, Shaukat, Schneider, Jochen, Hastings, Jerome
Lenguaje:eng
Publicado: Springer 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-319-04507-8
http://cds.cern.ch/record/2681690
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author Jaeschke, Eberhard
Khan, Shaukat
Schneider, Jochen
Hastings, Jerome
author_facet Jaeschke, Eberhard
Khan, Shaukat
Schneider, Jochen
Hastings, Jerome
author_sort Jaeschke, Eberhard
collection CERN
description Hardly any other discovery of the nineteenth century did have such an impact on science and technology as Wilhelm Conrad Röntgen’s seminal find of the X-rays. X-ray tubes soon made their way as excellent instruments for numerous applications in medicine, biology, materials science and testing, chemistry and public security. Developing new radiation sources with higher brilliance and much extended spectral range resulted in stunning developments like the electron synchrotron and electron storage ring and the free-electron laser. This handbook highlights these developments in fifty chapters. The reader is given not only an inside view of exciting science areas but also of design concepts for the most advanced light sources. The theory of synchrotron radiation and of the free-electron laser, design examples and the technology basis are presented. The handbook presents advanced concepts like seeding and harmonic generation, the booming field of Terahertz radiation sources and upcoming brilliant light sources driven by laser-plasma accelerators. The applications of the most advanced light sources and the advent of nanobeams and fully coherent x-rays allow experiments from which scientists in the past could not even dream. Examples are the diffraction with nanometer resolution, imaging with a full 3D reconstruction of the object from a diffraction pattern, measuring the disorder in liquids with high spatial and temporal resolution. The 20th century was dedicated to the development and improvement of synchrotron light sources with an ever ongoing increase of brilliance. With ultrahigh brilliance sources, the 21th century will be the century of x-ray lasers and their applications. Thus, we are already close to the dream of condensed matter and biophysics: imaging single (macro)molecules and measuring their dynamics on the femtosecond timescale to produce movies with atomic resolution.
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spelling cern-26816902021-04-21T18:22:53Zdoi:10.1007/978-3-319-04507-8http://cds.cern.ch/record/2681690engJaeschke, EberhardKhan, ShaukatSchneider, JochenHastings, JeromeSynchrotron light sources and free-electron lasers: accelerator physics, instrumentation and science applicationsAccelerators and Storage RingsHardly any other discovery of the nineteenth century did have such an impact on science and technology as Wilhelm Conrad Röntgen’s seminal find of the X-rays. X-ray tubes soon made their way as excellent instruments for numerous applications in medicine, biology, materials science and testing, chemistry and public security. Developing new radiation sources with higher brilliance and much extended spectral range resulted in stunning developments like the electron synchrotron and electron storage ring and the free-electron laser. This handbook highlights these developments in fifty chapters. The reader is given not only an inside view of exciting science areas but also of design concepts for the most advanced light sources. The theory of synchrotron radiation and of the free-electron laser, design examples and the technology basis are presented. The handbook presents advanced concepts like seeding and harmonic generation, the booming field of Terahertz radiation sources and upcoming brilliant light sources driven by laser-plasma accelerators. The applications of the most advanced light sources and the advent of nanobeams and fully coherent x-rays allow experiments from which scientists in the past could not even dream. Examples are the diffraction with nanometer resolution, imaging with a full 3D reconstruction of the object from a diffraction pattern, measuring the disorder in liquids with high spatial and temporal resolution. The 20th century was dedicated to the development and improvement of synchrotron light sources with an ever ongoing increase of brilliance. With ultrahigh brilliance sources, the 21th century will be the century of x-ray lasers and their applications. Thus, we are already close to the dream of condensed matter and biophysics: imaging single (macro)molecules and measuring their dynamics on the femtosecond timescale to produce movies with atomic resolution.Springeroai:cds.cern.ch:26816902019
spellingShingle Accelerators and Storage Rings
Jaeschke, Eberhard
Khan, Shaukat
Schneider, Jochen
Hastings, Jerome
Synchrotron light sources and free-electron lasers: accelerator physics, instrumentation and science applications
title Synchrotron light sources and free-electron lasers: accelerator physics, instrumentation and science applications
title_full Synchrotron light sources and free-electron lasers: accelerator physics, instrumentation and science applications
title_fullStr Synchrotron light sources and free-electron lasers: accelerator physics, instrumentation and science applications
title_full_unstemmed Synchrotron light sources and free-electron lasers: accelerator physics, instrumentation and science applications
title_short Synchrotron light sources and free-electron lasers: accelerator physics, instrumentation and science applications
title_sort synchrotron light sources and free-electron lasers: accelerator physics, instrumentation and science applications
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1007/978-3-319-04507-8
http://cds.cern.ch/record/2681690
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AT khanshaukat synchrotronlightsourcesandfreeelectronlasersacceleratorphysicsinstrumentationandscienceapplications
AT schneiderjochen synchrotronlightsourcesandfreeelectronlasersacceleratorphysicsinstrumentationandscienceapplications
AT hastingsjerome synchrotronlightsourcesandfreeelectronlasersacceleratorphysicsinstrumentationandscienceapplications