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Storage ring-based inverse compton x...
~
Gunther, Benedikt Sebastian.
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Storage ring-based inverse compton x-ray sources = cavity design, beamline development and x-ray applications /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Storage ring-based inverse compton x-ray sources/ by Benedikt Sebastian Gunther.
Reminder of title:
cavity design, beamline development and x-ray applications /
Author:
Gunther, Benedikt Sebastian.
Published:
Cham :Springer International Publishing : : 2023.,
Description:
xxiii, 348 p. :ill., digital ;24 cm.
Notes:
"Doctoral thesis accepted by Technical University of Munich, Garching, Germany."
[NT 15003449]:
Inverse Compton X-ray sources - a revolution or a complement? -- The physics of inverse Compton scattering X-ray sources -- X-ray generation by laser-electron interaction -- Scalar wave theory -- Enhancement cavities -- Fundamentals of X-ray imaging and spectroscopy. R&D at the inverse Compton X-ray source of the MuCLS -- Overview on inverse Compton X-ray sources -- The CLS laser upgrade -- Development of a deformable exit optic -- Fast X-ray energy switching -- X-ray beam position monitoring and stabilisation -- x-ray imaging and spectroscopy at the MuCLS -- The MuCLS beamline -- Full-field structured-illumination super-resolution X-ray transmission microscopy -- X-ray techniques & applications at the MuCLS -- Conclusion.
Contained By:
Springer Nature eBook
Subject:
X-rays. -
Online resource:
https://doi.org/10.1007/978-3-031-17742-2
ISBN:
9783031177422
Storage ring-based inverse compton x-ray sources = cavity design, beamline development and x-ray applications /
Gunther, Benedikt Sebastian.
Storage ring-based inverse compton x-ray sources
cavity design, beamline development and x-ray applications /[electronic resource] :by Benedikt Sebastian Gunther. - Cham :Springer International Publishing :2023. - xxiii, 348 p. :ill., digital ;24 cm. - Springer theses,2190-5061. - Springer theses..
"Doctoral thesis accepted by Technical University of Munich, Garching, Germany."
Inverse Compton X-ray sources - a revolution or a complement? -- The physics of inverse Compton scattering X-ray sources -- X-ray generation by laser-electron interaction -- Scalar wave theory -- Enhancement cavities -- Fundamentals of X-ray imaging and spectroscopy. R&D at the inverse Compton X-ray source of the MuCLS -- Overview on inverse Compton X-ray sources -- The CLS laser upgrade -- Development of a deformable exit optic -- Fast X-ray energy switching -- X-ray beam position monitoring and stabilisation -- x-ray imaging and spectroscopy at the MuCLS -- The MuCLS beamline -- Full-field structured-illumination super-resolution X-ray transmission microscopy -- X-ray techniques & applications at the MuCLS -- Conclusion.
This thesis presents research on novel laboratory-scale synchrotron X-ray sources based on inverse Compton scattering and applications of their X-ray radiation using the Munich Compact Light Source (MuCLS) as an example. It provides an introduction to the theory of this laser-electron interaction, laser resonators and X-ray interactions with matter. On this basis, upgrades to the laser system including the development of a new laser optic, X-ray beam stabilisation and two techniques for fast X-ray energy switching of inverse Compton sources are presented. On the application side, the beamline, designed and developed for the inverse Compton X-ray source at the MuCLS, is described before various techniques and applications are demonstrated at this laboratory-scale synchrotron X-ray facility. Among them are K-edge subtraction imaging, X-ray phase contrast imaging and X-ray absorption spectroscopy. Additionally, a new X-ray microscopy technique, called full-field structured-illumination super-resolution X-ray transmission microscopy, is presented. Apart from research conducted at the MuCLS, this thesis contains an in-depth overview on the state of the art of the various types of inverse Compton X-ray sources that have been realised so far. Accordingly, this thesis may serve as a guide and reference work for researchers working with inverse Compton X-ray sources as well as future users of such devices.
ISBN: 9783031177422
Standard No.: 10.1007/978-3-031-17742-2doiSubjects--Topical Terms:
604695
X-rays.
LC Class. No.: QC481
Dewey Class. No.: 539.7222
Storage ring-based inverse compton x-ray sources = cavity design, beamline development and x-ray applications /
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cavity design, beamline development and x-ray applications /
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Inverse Compton X-ray sources - a revolution or a complement? -- The physics of inverse Compton scattering X-ray sources -- X-ray generation by laser-electron interaction -- Scalar wave theory -- Enhancement cavities -- Fundamentals of X-ray imaging and spectroscopy. R&D at the inverse Compton X-ray source of the MuCLS -- Overview on inverse Compton X-ray sources -- The CLS laser upgrade -- Development of a deformable exit optic -- Fast X-ray energy switching -- X-ray beam position monitoring and stabilisation -- x-ray imaging and spectroscopy at the MuCLS -- The MuCLS beamline -- Full-field structured-illumination super-resolution X-ray transmission microscopy -- X-ray techniques & applications at the MuCLS -- Conclusion.
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This thesis presents research on novel laboratory-scale synchrotron X-ray sources based on inverse Compton scattering and applications of their X-ray radiation using the Munich Compact Light Source (MuCLS) as an example. It provides an introduction to the theory of this laser-electron interaction, laser resonators and X-ray interactions with matter. On this basis, upgrades to the laser system including the development of a new laser optic, X-ray beam stabilisation and two techniques for fast X-ray energy switching of inverse Compton sources are presented. On the application side, the beamline, designed and developed for the inverse Compton X-ray source at the MuCLS, is described before various techniques and applications are demonstrated at this laboratory-scale synchrotron X-ray facility. Among them are K-edge subtraction imaging, X-ray phase contrast imaging and X-ray absorption spectroscopy. Additionally, a new X-ray microscopy technique, called full-field structured-illumination super-resolution X-ray transmission microscopy, is presented. Apart from research conducted at the MuCLS, this thesis contains an in-depth overview on the state of the art of the various types of inverse Compton X-ray sources that have been realised so far. Accordingly, this thesis may serve as a guide and reference work for researchers working with inverse Compton X-ray sources as well as future users of such devices.
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Physics and Astronomy (SpringerNature-11651)
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