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Universal Journal of Materials Science Vol. 6(1), pp. 1 - 7
DOI: 10.13189/ujms.2018.060101
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Measurement of High Values of Q-factor of 1.3 GHz Superconducting Cavity of TESLA-type


Azaryan, N.S. 1,*, Batouritski, M.A. 2, Budagov, Yu.A. 1, Demyanov, S.E. 3, Karpovich, V.V. 2, Liubetski, N.V. 2, Maximov, S.I. 2, Rodionova, V.N. 2, Shirkov, G.D. 1
1 Joint Institute for Nuclear Research, 141980 Moskow Region, Dubna, Russia
2 Institute for Nuclear Problems, Belarusian State University, 220030 Minsk, 11, Bobruiskaya Str., Belarus
3 The Scientific and Practical Materials Research Center NAB, 19 P.Brovka Street, Minsk BY-220072, Belarus

ABSTRACT

Presented the ideas and techniques underlying the measuring workbench created within the framework of a Dubna-Minsk research project to estimate, by measuring of S11, of a high value (about 1011) of Q-factor of a 1.3 GHz superconducting radio-frequency (SRF) niobium cavity of TESLA-type, which is a key element the superconducting accelerating system of the International Linear Collider (ILC) operating at 1.3 GHz and made of thousands of such cavities. In the paper, the results of measurements and Q-factor estimates are also presented and discussed.

KEYWORDS
Microwave, Niobium Resonator, Superconductivity, Quality Factor

Cite This Paper in IEEE or APA Citation Styles
(a). IEEE Format:
[1] Azaryan, N.S. , Batouritski, M.A. , Budagov, Yu.A. , Demyanov, S.E. , Karpovich, V.V. , Liubetski, N.V. , Maximov, S.I. , Rodionova, V.N. , Shirkov, G.D. , "Measurement of High Values of Q-factor of 1.3 GHz Superconducting Cavity of TESLA-type," Universal Journal of Materials Science, Vol. 6, No. 1, pp. 1 - 7, 2018. DOI: 10.13189/ujms.2018.060101.

(b). APA Format:
Azaryan, N.S. , Batouritski, M.A. , Budagov, Yu.A. , Demyanov, S.E. , Karpovich, V.V. , Liubetski, N.V. , Maximov, S.I. , Rodionova, V.N. , Shirkov, G.D. (2018). Measurement of High Values of Q-factor of 1.3 GHz Superconducting Cavity of TESLA-type. Universal Journal of Materials Science, 6(1), 1 - 7. DOI: 10.13189/ujms.2018.060101.