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Titlebook: Diffraction Radiation from Relativistic Particles; Alexander Petrovich Potylitsyn,Mikhail Ivanovich R Book 2011 Springer-Verlag GmbH Berli

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发表于 2025-3-21 16:13:53 | 显示全部楼层 |阅读模式
书目名称Diffraction Radiation from Relativistic Particles
编辑Alexander Petrovich Potylitsyn,Mikhail Ivanovich R
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概述First book focussing on diffraction radiation of relativistic and ultrarelativistic charged particles.Summarizes the current knowledge of radiation from relativistic particles.Presents the general pro
丛书名称Springer Tracts in Modern Physics
图书封面Titlebook: Diffraction Radiation from Relativistic Particles;  Alexander Petrovich Potylitsyn,Mikhail Ivanovich R Book 2011 Springer-Verlag GmbH Berli
描述This book deals with diffraction radiation, which implies the boundary problems of electromagnetic radiation theory. Diffraction radiation is generated when a charged particle moves near a target edge at a distance ( – Lorentz factor,– wave length). Diffraction radiation of non-relativistic particles is widely used to design intense emitters in the cm wavelength range. Diffraction radiation from relativistic charged particles is important for noninvasive beam diagnostics and design of free electron lasers based on Smith-Purcell radiation which is diffraction radiation from periodic structures.Different analytical models of diffraction radiation and results of recent experimental studies are presented in this book. The book may also serve as guide to classical electrodynamics applications in beam physics and electrodynamics. It can be of great use for young researchers to develop skills and for experienced scientists to obtain new results.
出版日期Book 2011
关键词Beam Diagnostics; Coherent Radiation; Diffraction Radiation; Relativistic Particles; Smith-Purcell Effec
版次1
doihttps://doi.org/10.1007/978-3-642-12513-3
isbn_softcover978-3-642-26546-4
isbn_ebook978-3-642-12513-3Series ISSN 0081-3869 Series E-ISSN 1615-0430
issn_series 0081-3869
copyrightSpringer-Verlag GmbH Berlin Heidelberg 2011
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发表于 2025-3-21 23:25:54 | 显示全部楼层
Diffraction Radiation at the Resonant Frequency,ss section for the scattering of an electromagnetic wave from an atom is maximal near resonance, so that the diffraction radiation intensity should increase at resonant frequencies. As known, the transverse field of a source at small distances is much lower than the longitudinal field. Therefore, th
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Coherent Radiation Generated by Bunches of Charged Particles,t, in the range of wavelengths comparable with the length of the electron bunch .., radiation becomes coherent, i.e., the intensity of radiation generated by the bunch depends quadratically on the number of electrons in the bunch (on the “population” of the bunch).
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Experimental Investigations of Diffraction Radiation Generated by Relativistic Electrons, generated by relativistic electrons was carried out only in 1995 [1]. The scheme of the experiment is shown in Fig. 9.1. The measurements were performed with a 150-MeV electron beam consisting of bunches with a length of about 1 mm and a diameter of about 2.5 mm. The population of a bunch was 1.5·1
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https://doi.org/10.1057/9780230603066As mentioned above, diffraction radiation can be considered as radiation generated by polarization currents induced in a medium by the field of a moving charge. The distance between the charge trajectory and medium surface is usually much larger than the mean intermolecular distance in the medium.
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Radiation from Relativistic Particles,It is well known that emission is the process of the formation of transverse electromagnetic waves by moving charged particles. Let us consider the emission process occurring when a relativistic charged particle moves according to the law
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