Electromagnetic Radiation of Electrons in Periodic Structures

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Periodic magnetic structures (undulators) are widely used in accelerators to generate monochromatic undulator radiation (UR) in the range from far infrared to the hard X-ray region. Another periodic crystalline structure is used to produce quasimonochromatic polarized photon beams via the coherent bremsstrahlung mechanism (CBS). Due to such characteristics as monochromaticity, polarization and adjustability, these types of radiation is of large interest for applied and basic research of accelerator-emitted radiation. The book provides a detailed overview of the fundamental principles behind electromagnetic radiation emitted from accelerated charged particles (e.g. UR, CBS, radiation of fast electrons in Laser flash fields) as well as a unified description of relatively new radiation mechanisms which attracted great interest in recent years. This are the so-called polarization radiation excited by the Coulomb field of incident particles in periodic structures, parametric X-rays, resonant transition radiation and the Smith-Purcell effect. Characteristics of such radiation sources and perspectives of their usage are discussed. The recent experimental results as well as their interpretation are presented.

Author(s): Alexander Petrovich Potylitsyn (auth.)
Series: Springer Tracts in Modern Physics 243
Edition: 1
Publisher: Springer-Verlag Berlin Heidelberg
Year: 2011

Language: English
Pages: 216
Tags: Particle Acceleration and Detection, Beam Physics;Applied and Technical Physics;Optics, Optoelectronics, Plasmonics and Optical Devices;Microwaves, RF and Optical Engineering

Front Matter....Pages i-xi
Introduction....Pages 1-3
Basic Characteristics of Electromagnetic Radiation....Pages 5-16
Undulator Radiation....Pages 17-38
Coherent Bremsstrahlung....Pages 39-72
Resonant Transition Radiation....Pages 73-103
Parametric X-ray Radiation....Pages 105-133
Smith–Purcell Radiation....Pages 135-164
Radiation of Electrons in the Field of Intense Laser Wave....Pages 165-205
Conclusion....Pages 207-209
Back Matter....Pages 211-213