Diffraction Radiation from Relativistic Particles

Diffraction Radiation from Relativistic Particles
Author: Alexander Potylitsyn
Publisher: Springer
Total Pages: 285
Release: 2010-10-05
Genre: Science
ISBN: 3642125131

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.

Diffraction Radiation from Relativistic Particles

Diffraction Radiation from Relativistic Particles
Author: Alexander Potylitsyn
Publisher: Springer Science & Business Media
Total Pages: 285
Release: 2010-10-11
Genre: Science
ISBN: 3642125123

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.

Diffraction Radiation from Relativistic Particles

Diffraction Radiation from Relativistic Particles
Author: Alexander Potylitsyn
Publisher: Springer
Total Pages: 278
Release: 2010-11-04
Genre: Science
ISBN: 9783642125140

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.

Diffraction Radiation from Relativistic Electron Bunches

Diffraction Radiation from Relativistic Electron Bunches
Author: Michael J. Gallet
Publisher:
Total Pages: 65
Release: 1986
Genre:
ISBN:

Diffraction radiation is that electromagnetic energy which is caused by a relativistic charged particle passing through an aperture in an opaque material. Ter-Mikaelian solved for the diffraction radiation from a point charge. This paper discusses the phenomena resulting from finite, relativistic charge bunches. Using the Huygens Fresnel principle, diffraction patterns from spherical and cylindrical charge distributions are found and plotted. For charge bunch sizes less than the radiation wavelength, the results are almost identical to those for point charges. The radiation pattern is composed of two regions. The transition region is characterized by a strong peak at theta = 1/gamma, the Lorentz factor. The diffraction region consists of a series of peaks and nulls in field strength typical of the standard plane wave diffraction pattern. (Theses).

University Physics

University Physics
Author: OpenStax
Publisher:
Total Pages: 622
Release: 2016-11-04
Genre: Science
ISBN: 9781680920451

University Physics is a three-volume collection that meets the scope and sequence requirements for two- and three-semester calculus-based physics courses. Volume 1 covers mechanics, sound, oscillations, and waves. Volume 2 covers thermodynamics, electricity and magnetism, and Volume 3 covers optics and modern physics. This textbook emphasizes connections between between theory and application, making physics concepts interesting and accessible to students while maintaining the mathematical rigor inherent in the subject. Frequent, strong examples focus on how to approach a problem, how to work with the equations, and how to check and generalize the result. The text and images in this textbook are grayscale.

Essential Radio Astronomy

Essential Radio Astronomy
Author: James J. Condon
Publisher: Princeton University Press
Total Pages: 376
Release: 2016-04-05
Genre: Science
ISBN: 069113779X

The ideal text for a one-semester course in radio astronomy Essential Radio Astronomy is the only textbook on the subject specifically designed for a one-semester introductory course for advanced undergraduates or graduate students in astronomy and astrophysics. It starts from first principles in order to fill gaps in students' backgrounds, make teaching easier for professors who are not expert radio astronomers, and provide a useful reference to the essential equations used by practitioners. This unique textbook reflects the fact that students of multiwavelength astronomy typically can afford to spend only one semester studying the observational techniques particular to each wavelength band. Essential Radio Astronomy presents only the most crucial concepts—succinctly and accessibly. It covers the general principles behind radio telescopes, receivers, and digital backends without getting bogged down in engineering details. Emphasizing the physical processes in radio sources, the book's approach is shaped by the view that radio astrophysics owes more to thermodynamics than electromagnetism. Proven in the classroom and generously illustrated throughout, Essential Radio Astronomy is an invaluable resource for students and researchers alike. The only textbook specifically designed for a one-semester course in radio astronomy Starts from first principles Makes teaching easier for astronomy professors who are not expert radio astronomers Emphasizes the physical processes in radio sources Covers the principles behind radio telescopes and receivers Provides the essential equations and fundamental constants used by practitioners Supplementary website includes lecture notes, problem sets, exams, and links to interactive demonstrations An online illustration package is available to professors

Diffraction Radiation Produced by a Charged Particle Passing Near Or Through a Dielectric Sphere

Diffraction Radiation Produced by a Charged Particle Passing Near Or Through a Dielectric Sphere
Author:
Publisher:
Total Pages:
Release: 1985
Genre:
ISBN:

We have derived expressions for the spectral distribution of diffraction radiation produced when a charged particle of constant velocity passes near or through a dielectric sphere of radius a. Our expressions, which are valid in the long wavelength limit ka “1, describe the production of radiation as a function of the particle's impact parameter and energy and as a function of the dielectric property of the sphere. Our results reduce to forms similar to Rayleigh scattering of light when ka .-->. O and the impact parameter is large. Certain limiting cases of our expressions are found to be significantly different from the corresponding results previously published by other workers. 4 refs., 7 figs.

Particle Accelerator Physics

Particle Accelerator Physics
Author: Helmut Wiedemann
Publisher: Springer Science & Business Media
Total Pages: 457
Release: 2013-11-11
Genre: Science
ISBN: 3662029030

Particle Accelerator Physics covers the dynamics of relativistic particle beams, basics of particle guidance and focusing, lattice design, characteristics of beam transport systems and circular accelerators. Particle-beam optics is treated in the linear approximation including sextupoles to correct for chromatic aberrations. Perturbations to linear beam dynamics are analyzed in detail and correction measures are discussed, while basic lattice design features and building blocks leading to the design of more complicated beam transport systems and circular accelerators are studied. Characteristics of synchrotron radiation and quantum effects due to the statistical emission of photons on particle trajectories are derived and applied to determine particle-beam parameters. The discussions specifically concentrate on relativistic particle beams and the physics of beam optics in beam transport systems and circular accelerators such as synchrotrons and storage rings. This book forms a broad basis for further, more detailed studies of nonlinear beam dynamics and associated accelerator physics problems, discussed in the subsequent volume.