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Gratings Mirrors And Slits Beamline Design For Soft Xray Synchrotron Radiation Sources First Edition Peatman

  • SKU: BELL-9953136
Gratings Mirrors And Slits Beamline Design For Soft Xray Synchrotron Radiation Sources First Edition Peatman
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Gratings Mirrors And Slits Beamline Design For Soft Xray Synchrotron Radiation Sources First Edition Peatman instant download after payment.

Publisher: Routledge
File Extension: PDF
File size: 7.58 MB
Pages: 228
Author: Peatman, WB
ISBN: 9780203719909, 0203719905
Language: English
Year: 2018
Edition: First edition

Product desciption

Gratings Mirrors And Slits Beamline Design For Soft Xray Synchrotron Radiation Sources First Edition Peatman by Peatman, Wb 9780203719909, 0203719905 instant download after payment.

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. 
Abstract: 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

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