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Parametric X-Ray Radiation in Crystals : Theory, Experiment and Applications

Author: Vladimir G Baryshevsky; Ilya D Feranchuk; Alexander P Ulyanenkov
Publisher: Berlin Heidelberg : Springer-Verlag GmbH., 2005.
Series: Springer Tracts in Modern Physics, 213.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:

This radiation is generated by the motion of electrons inside a crystal, whereby the emitted photons are diffracted by the crystal and the radiation intensity critically depends on the parameters of  Read more...

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Additional Physical Format: Parametric X-ray radiation in crystals
(NL-LeOCL)284783870
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Vladimir G Baryshevsky; Ilya D Feranchuk; Alexander P Ulyanenkov
ISBN: 9783540269052 3540269053 9783540324102 3540324100
OCLC Number: 1012507620
Description: 1 online resource.
Contents: Part I. Theory1. Electromagnetic radiation from a charged particle in a crystal: Qualitative consideration1.1 Optical and X-ray Cherenkov radiation in uniform media1.2 Pseudophoton spectrum of relativistic electron 1.3 Influence of a periodic crystal structure on the pseudophoton spectrum1.4 PXR and Cherenkov radiation at diffraction conditions1.5 Limitations of the kinematical theory and multiple scattering of electrons1.6 Various radiation mechanisms from relativistic electrons1.7 Pioneering experiments on observation of PXR2. Radiation of a charged particle in periodic media: Classical theory2.1 Radiation field representation via solution for Maxwell's equations2.2 Exact solution for PXR from the stack of plates 2.3 Radiation in one-dimensional periodical media: Two-beam approximation2.4 Kinematic theory of PXR in a thin crystal 2.5 Dynamical diffraction theory and PXR in a bulk crystal3. Quantum electrodynamics in a crystal3.1 Quantization of x-ray wave fields in crystals3.2 Wave functions of stationary states of a relativistic electron3.3 Diagram technique for calculation of cross-section of electromagnetic process3.4 Classification of x-ray radiation types from relativistic electrons in crystal3.5 Multiple scattering of electrons Part II. Experiments and Applications4. Characteristics of PXR from relativistic electrons4.1 Space distribution of PXR reflections4.2 Spectral distribution of PXR intensity within the Bragg reflection4.3 Angular distribution of PXR within the Bragg reflection 4.4 Polarization of parametric x-rays4.5 PXR in the direction of electron velocity 5. Special cases of PXR generation5.1 PXR in the vicinity of characteristic lines and in Moessbauer crystals5.2 Dynamical effects in PXR5.3 PXR under multiple-beam Bragg diffraction5.4 PXR in case of grazing incidence (exit) diffraction5.5 Influence of crystal imperfections5.6 Parametric x-rays from heavy charged particles6. X-ray radiation from nonrelativistic particles6.1 PXR intensity dependence on electron energy6.2 Coherent Bremsstrahlung from nonrelativistic electrons6.3 Amplitude interference of PXR and coherent Bremsstrahlung6.4 Spectral and angular distribution of x-rays from nonrelativistic particles in crystal6.5 X-ray radiation from nonrelativistic electrons in superlattices7. Prospective PXR applications7.1 Monochromatic x-ray beam from relativistic electrons7.2 Tunable source of soft x-rays7.3 PXR for x-ray structure analysis7.4 Crystallographic phase problem and PXR 8. Collective effects in PXR within a high-current electron beam8.1 Interference of g-beams from independent sources8.2 The coherence of radiation from electrons in the beam8.3 Parametric beam instability in crystals8.4 Parametric instability under multiple-beam diffraction8.5 Quantum effects in the formation of coherent x-ray radiation from electron beam8.6 Conditions for inverse population due to parametric excitation of Moessbauer nuclei in crystals
Series Title: Springer Tracts in Modern Physics, 213.
Responsibility: edited by Vladimir G. Baryshevsky, Ilya D. Feranchuk, Alexander P. Ulyanenkov.

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