Optimization of the parameters of a standard source of synchrotron radiation with strong magnetic field for calibration of ultraviolet plasma radiators and integral radiometer-dosimeters

The ability to increase the precision of the reproduction and dissemination of the units of spectroradiometric quantities for a standard synchrotron radiation source through the creation of a magnetic system with optimal decay index for build-up of axial betatron oscillations is investigated. A comp...

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Published in:Measurement techniques Vol. 55; no. 12; pp. 1356 - 1363
Main Authors: Anevskii, S. I., Zolotarevskii, Yu. M., Ivanov, V. S., Krutikov, V. N., Minaeva, O. A., Minaev, R. V., Senin, D. S., Titov, A. Yu
Format: Journal Article
Language:English
Published: Boston Springer US 01-03-2013
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Abstract The ability to increase the precision of the reproduction and dissemination of the units of spectroradiometric quantities for a standard synchrotron radiation source through the creation of a magnetic system with optimal decay index for build-up of axial betatron oscillations is investigated. A comparative analysis of the method of reproduction and dissemination of the units to the SURF-III NIST electronic storage ring and the synchrotron of the All-Russia Research Institute of Optophysical Measurements is conducted and it is shown that the electronic emittance of a source of synchrotron radiation must be taken into account to assure a high level of precision of national standards.
AbstractList The ability to increase the precision of the reproduction and dissemination of the units of spectroradiometric quantities for a standard synchrotron radiation source through the creation of a magnetic system with optimal decay index for build-up of axial betatron oscillations is investigated. A comparative analysis of the method of reproduction and dissemination of the units to the SURF-III NIST electronic storage ring and the synchrotron of the All-Russia Research Institute of Optophysical Measurements is conducted and it is shown that the electronic emittance of a source of synchrotron radiation must be taken into account to assure a high level of precision of national standards.
The ability to increase the precision of the reproduction and dissemination of the units of spectroradiometric quantities for a standard synchrotron radiation source through the creation of a magnetic system with optimal decay index for build-up of axial betatron oscillations is investigated. A comparative analysis of the method of reproduction and dissemination of the units to the SURF-III NIST electronic storage ring and the synchrotron of the All-Russia Research Institute of Optophysical Measurements is conducted and it is shown that the electronic emittance of a source of synchrotron radiation must be taken into account to assure a high level of precision of national standards.[PUBLICATION ABSTRACT]
The ability to increase the precision of the reproduction and dissemination of the units of spectroradiometric quantities for a standard synchrotron radiation source through the creation of a magnetic system with optimal decay index for build-up of axial betatron oscillations is investigated. A comparative analysis of the method of reproduction and dissemination of the units to the SURF-III NIST electronic storage ring and the synchrotron of the All-Russia Research Institute of Optophysical Measurements is conducted and it is shown that the electronic emittance of a source of synchrotron radiation must be taken into account to assure a high level of precision of national standards. Keywords: synchrotron and ultraviolet radiation, standard plasma sources, electronic emittance, magnetic field decay index, integral multichannel radiometer-dosimeters.
Audience Academic
Author Ivanov, V. S.
Krutikov, V. N.
Anevskii, S. I.
Minaev, R. V.
Senin, D. S.
Titov, A. Yu
Zolotarevskii, Yu. M.
Minaeva, O. A.
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Cites_doi 10.1007/978-3-662-02903-9
10.1093/oso/9780198517580.001.0001
10.6028/jres.107.035
10.1088/0026-1394/32/6/11
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Keywords integral multichannel radiometer-dosimeters
synchrotron and ultraviolet radiation
magnetic field decay index
standard plasma sources
electronic emittance
Language English
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SubjectTerms Analytical Chemistry
Betatrons
Calibration
Characterization and Evaluation of Materials
Comparative analysis
Electric fields
Electronics
Electronics industry
Electrons
Energy
Equilibrium
Magnetic fields
Measurement Science and Instrumentation
Measurement techniques
Measuring instruments
Nuclear radiation
Optimization
Optimization techniques
Optophysical Measurements
Physical Chemistry
Physics
Physics and Astronomy
Plasma physics
Radiometers
Reproduction
Research centers
Standard deviation
Studies
Surfing
Synchrotron radiation
Synchrotrons
Ultraviolet radiation
Title Optimization of the parameters of a standard source of synchrotron radiation with strong magnetic field for calibration of ultraviolet plasma radiators and integral radiometer-dosimeters
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