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 |
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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. |
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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 |
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References | CR4 CR3 CR6 CR7 CR9 CR16 CR15 Harilal (CR1) 2006; 39 CR13 CR12 CR11 Arp (CR14) 2002; 73 Arp (CR2) 2002; 107 Chao, Tigner (CR5) 1999 Sands (CR10) 1971 Press (CR17) 1992 Duke (CR18) 2000 Hughey, Schaefer (CR8) 1982; 195 PJ Duke (134_CR18) 2000 (134_CR5) 1999 134_CR16 134_CR15 134_CR12 134_CR11 134_CR14 134_CR13 134_CR1 M Sands (134_CR10) 1971 134_CR3 134_CR2 134_CR4 134_CR7 134_CR6 134_CR9 134_CR8 WH Press (134_CR17) 1992 |
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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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