Preliminary Design Parameters Of 6 Gev Storage Ring Lattice For Synchrotron Light Source


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Preliminary Design Parameters of 6 GeV Storage Ring Lattice for Synchrotron Light Source


Preliminary Design Parameters of 6 GeV Storage Ring Lattice for Synchrotron Light Source

Author:

language: en

Publisher:

Release Date: 1984


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In this note, we describe a design of lattice, which is by no means optimized for the ultimate performance, but these parameters can be used for the starting point of other design efforts. Assumptions and features used in this design are: (1) 32 periods which is reasonably high periodicity for chromaticity corrections. (2) Achromatic bending cell which enables us to make all straight sections to be dispersion free. (3) Twiss parameters at dispersion area are the same for all cells to make undulator straight section can be tuned to wiggler straight section a-id vice versa. (4) No attempt is made to extract the photon beam from bending magnets, and when this feature is added, the lattice design may have to be changed in order to provide-the photon beam channel. (5) Natural emittance in the horizontal plane is made as small as possible in the range of 10-8m radians. This value can be optimized later by judicious choice of the Twiss parameters through the bending magnets. (6) The bending magnet should have parallel edges in order to simplify its construction. This assumption implies that there is vertical focussing from the edge. (7) The beta functions at the straight section should be tunable so that various configurations of the insertion devices should be accommodated.

Report of Machine Workshop on the 6-GeV Synchrotron Radiation Source


Report of Machine Workshop on the 6-GeV Synchrotron Radiation Source

Author:

language: en

Publisher:

Release Date: 1985


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An Introduction to Synchrotron Radiation


An Introduction to Synchrotron Radiation

Author: Philip Willmott, PhD

language: en

Publisher: John Wiley & Sons

Release Date: 2019-02-27


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The updated guide to the fundamental concepts, techniques and applications of synchrotron radiation and its applications in this rapidly developing field Synchrotron light is recognized as an invaluable research tool by a broad spectrum of scientists, ranging from physicists to biologists and archaeologists. The comprehensively revised second edition of An Introduction to Synchrotron Radiation offers a guide to the basic concepts of the generation and manipulation of synchrotron light, its interaction with matter and the application of synchrotron light in x-ray scattering, spectroscopy, and imaging. The author, a noted expert in the field, reviews the fundamentals of important experimental methods, and explores the most recent technological advances in both the latest generation of x-ray sources and x-ray instrumentation. Designed to be an accessible resource, the book contains full-colour illustrations of the underlying physics and experimental applications, as well as the most commonly-used synchrotron techniques. In particular, the updated second edition now includes: In-depth descriptions of the latest x-ray-source technologies, notably diffraction-limited storage rings and x-ray free-electron lasers The latest advances in instrumentation, x-ray optics, and experimental methods in synchrotron radiation The most recent developments in macromolecular crystallography, time-resolved studies, and imaging techniques A comprehensive set of problems for each chapter, plus their ideal solutions in the appendices. Written for undergraduate and postgraduate students from all areas of the natural and physical sciences, An Introduction to Synchrotron Radiation, Second Edition is an invaluable up-to-date reference source in this highly multidisciplinary field. PowerPoint slides of all the figures within the text are available for download, for instructors and users of this book, at http://booksupport.wiley.com