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Optical Systems for Synchrotron Radiation

Optical Systems for Synchrotron Radiation
Author:
Publisher:
Total Pages:
Release: 1985
Genre:
ISBN:

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Various fundamental topics which underlie the design and use of optical systems for synchrotron radiation are considered from the viewpoint of linear system theory. These topics include the damped harmonic oscillator, free space propagation of an optical field, electromagnetic theory of optical properties of materials, theory of dispersion, and the Kramers-Kronig relations. 32 refs., 5 figs. (LEW).


Optical Systems for Soft X Rays

Optical Systems for Soft X Rays
Author: A.G. Michette
Publisher: Springer Science & Business Media
Total Pages: 338
Release: 2012-12-06
Genre: Science
ISBN: 1461322235

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A fundamental problem in cell biology is the cause of aging. The solution to this problem has not yet been obtained because,(l) until recently, it was not possible to image living cells directly. The use of low-energy (soft) X rays has made such imaging possible, perhaps thereby allowing the aging process to be understood and possibly overcome (a result that may well generate further social, moral, and ethical problems). Fortun ately this is not the only aspect of cell biology amenable to soft X-ray imaging, and it is envisaged that many less controversial studies--such as investigations of the detailed differences between healthy and diseased or malignant cells (in their natural states) and processes of cell division and growth-will be made possible. The use of soft X rays is not limited to biological studies-many applications are possible in, for example, fusion research, materials science, and astronomy. Such studies have only recently begun in earnest because several difficulties had to be overcome, major among these being the lack (for some purposes) of sufficiently intense sources, and the technological difficulties associated with making efficient optical systems. As is well known, the advent of dedicated synchrotron radiation sources, in particular, has alleviated the first of these difficulties, not just for the soft X-ray region. It is the purpose of this book to consider progress in the second.


Optical Components and Systems for Synchrotron Radiation

Optical Components and Systems for Synchrotron Radiation
Author:
Publisher:
Total Pages:
Release: 1981
Genre:
ISBN:

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A brief description of the nature and origins of synchrotron radiation is given with special reference to its geometrical optical properties and the use of storage rings as light souces. The geographical distribution of SR sources in the world is reviewed and some discussion of the level of experimental activity is given. Estimates of future levels of experimental activity are also made both for existing storage rings and those planned for the future. Calculations of the approximate number of mirrors and gratings that will be required are offered. Some general considerations are outlined showing how synchrotron radiation optical systems couple to the light source and indicating which parameters need to be maximized for best overall performance.


Optical Systems for Synchrotron Radiation

Optical Systems for Synchrotron Radiation
Author:
Publisher:
Total Pages:
Release: 1986
Genre:
ISBN:

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The history and present techniques of soft x-ray imaging are reviewed briefly. The physics of x-ray imaging is described, including the temporal and spatial coherence of x-ray sources. Particular technologies described are: contact x-ray microscopy, zone plate imaging, scanned image zone plate microscopy, scanned image reflection microscopy, and soft x-ray holography and diffraction. (LEW).


Optical Systems for Soft X Rays

Optical Systems for Soft X Rays
Author: A.G. Michette
Publisher: Springer
Total Pages: 358
Release: 1884
Genre: Science
ISBN: 9780306423208

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A fundamental problem in cell biology is the cause of aging. The solution to this problem has not yet been obtained because,(l) until recently, it was not possible to image living cells directly. The use of low-energy (soft) X rays has made such imaging possible, perhaps thereby allowing the aging process to be understood and possibly overcome (a result that may well generate further social, moral, and ethical problems). Fortun ately this is not the only aspect of cell biology amenable to soft X-ray imaging, and it is envisaged that many less controversial studies--such as investigations of the detailed differences between healthy and diseased or malignant cells (in their natural states) and processes of cell division and growth-will be made possible. The use of soft X rays is not limited to biological studies-many applications are possible in, for example, fusion research, materials science, and astronomy. Such studies have only recently begun in earnest because several difficulties had to be overcome, major among these being the lack (for some purposes) of sufficiently intense sources, and the technological difficulties associated with making efficient optical systems. As is well known, the advent of dedicated synchrotron radiation sources, in particular, has alleviated the first of these difficulties, not just for the soft X-ray region. It is the purpose of this book to consider progress in the second.


Optical Systems for Synchrotron Radiation. Lecture 1. Introductory Topics. Revision

Optical Systems for Synchrotron Radiation. Lecture 1. Introductory Topics. Revision
Author:
Publisher:
Total Pages:
Release: 1986
Genre:
ISBN:

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Various fundamental topics are considered which underlie the design and use of optical systems for synchrotron radiation. The point of view of linear system theory is chosen which acts as a unifying concept throughout the series. In this context the important optical quantities usually appear as either impulse response functions (Green's functions) or frequency transfer functions (Fourier Transforms of the Green's functions). Topics include the damped harmonic oscillator, free-space optical field propagation, optical properties of materials, dispersion, and the Kramers-Kronig relations.


Optical Systems for Synchrotron Radiation. Lecture 2. Mirror Systems

Optical Systems for Synchrotron Radiation. Lecture 2. Mirror Systems
Author:
Publisher:
Total Pages:
Release: 1986
Genre:
ISBN:

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The process of reflection of VUV and x-radiation is summarized. The functions of mirrors in synchrotron beamlines are described, which include deflection, filtration, power absorption, formation of a real image, focusing, and collimation. Fabrication of optical surfaces for synchrotron radiation beamlines are described, and include polishing of a near spherical surface as well as bending a cylindrical surface to toroidal shape. The imperfections present in mirrors, aberrations and surface figure inaccuracy, are discussed. Calculation of the thermal load of a mirror in a synchrotron radiation beam and the cooling of the mirror are covered briefly. 50 refs., 7 figs. (LEW).


Optical Systems for Synchrotron Radiation. Lecture 3. Monochromator Systems. Revision

Optical Systems for Synchrotron Radiation. Lecture 3. Monochromator Systems. Revision
Author:
Publisher:
Total Pages:
Release: 1986
Genre:
ISBN:

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General properties of monochromators are discussed, and some useful formulas for optical design are given. The discussion is limited to the Rowland reflection grating. Topics covered include focussing properties of a toroidal grating, aberrations, dispersion, resolution, and phase space acceptance. (LEW).


Synchrotron Radiation

Synchrotron Radiation
Author: Helmut Wiedemann
Publisher: Springer Science & Business Media
Total Pages: 281
Release: 2013-03-09
Genre: Science
ISBN: 3662053128

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In this book the characteristics of synchrotron radiation, including insertion device radiation, are described and derived from first principles. The reader is first introduced to the subject in an intuitive way in order to gain familiarity with the underlying physical processes. A rigorous mathematical derivation of the theory follows. Since the characteristics of synchrotron radiation are intimately connected with the parameters of the electron beam and its accelerator, a basic introduction to electron beam dynamics and accelerator design is included. The book is aimed at graduate students and scientists working with synchrotron radiation.


Gratings, Mirrors and Slits

Gratings, Mirrors and Slits
Author: WB Peatman
Publisher: Routledge
Total Pages: 228
Release: 2018-10-08
Genre: Technology & Engineering
ISBN: 1351444352

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Intended to provide scientists and engineers at synchrotron radiation facilities with a sound and convenient basis for designing beamlines for monochromatic soft x-ray radiation, this text will also be helpful to the users of synchrotron radiation who want to help ensure that beamlines being built are optimized for the experiments to be performed on them. The primary purpose of a beamline is to capture as much of the light of the source as possible and then to transfer the desired portion of that light as completely as possible to the experiment. With the development of dedicated, brilliant synchrotron radiation sources, the first half of the task has been greatly simplified. The beamline designer must contend with the second half of the problem -- conserving the brilliance of the source through an optical system which monochromatizes and focuses the radiation.