Extreme Values of Sunspot Activity on a Long Time Scale
- Authors: Nagovitsyn Y.A.1,2, Osipova A.A.3
-
Affiliations:
- Pulkovo Astronomical Observatory
- St. Petersburg State University of Aerospace Instrumentation
- Pulkovo Astronomical Observatory, Russian Academy of Sciences
- Issue: Vol 49, No 7 (2023)
- Pages: 506-514
- Section: Articles
- URL: https://jdigitaldiagnostics.com/0320-0108/article/view/674267
- DOI: https://doi.org/10.31857/S0320010823070033
- EDN: https://elibrary.ru/YCUARY
- ID: 674267
Cite item
Abstract
The extreme levels of solar activity on time scales of 300–400 and 9000 years are considered. The total sunspot area AR, a physical index of solar activity, has been estimated using the sunspot number reconstruction from Wu et al. (2018). The main study has been carried out precisely in terms of this index. The variations in solar activity at the epoch of the last 300–400 years represent fairly well its variations on time scales of the order of nine millennia. The maximum level of solar activity for the yearly averages is ARM = 2930 ± 400 m.s.h. (millionths of the solar hemisphere). The upper limit for the daily values is ARM = 7500 ± 2200 m.s.h. for the traditional sunspot areas corrected for the perspective distortion and AROM = 11 400 ± 3300 m.s.d. (millionths of the solar disk) for the so-called ‘‘observed’’ areas—the sunspot projections onto the visible solar disk. The maximum yearly averages of the sunspot number SNM = 258 ± 38 and the sunspot group number GNM = 12.3 ± 2.4; 11.3% have also been estimated; 11.3% of the time the solar activity is at an extremely high level; 8.5 and 4.5 % of the time its level corresponds to the Dalton minimum or lower and an extremely low one, respectively. Thus, extremely high levels are more likely for solar activity than extremely low ones.
Keywords
About the authors
Yu. A. Nagovitsyn
Pulkovo Astronomical Observatory; St. Petersburg State University of Aerospace Instrumentation
Email: nag-yury@yandex.ru
Russian Federation, Pulkovskoe sh. 65, St. Petersburg, 196140; Bol’shaya Morskaya ul. 67, St. Petersburg, 190000
A. A. Osipova
Pulkovo Astronomical Observatory, Russian Academy of Sciences
Author for correspondence.
Email: nag-yury@yandex.ru
196140, St. Petersburg, Russia
References
- Агекян Т.А., Основы теории ошибок для астрономов и физиков (М.: Наука, 1972), 172 с.
- Ацеро и др. (F.J. Acero, M.C. Gallego, J.A. García, I.G. Usoskin, and J.M. Vaquero), Astrophys. J. 853, id. 80 (2018).
- Ацеро и др. (F.J. Acero, V.M.S. Carrasco, M.C. Gallego, J.A. García, and J.M. Vaquero), Astrophys. J. 839, id. 98 (2017).
- Бердюгина (S.V. Berdyugina), Liv. Rev. Solar. Phys. 2, 8 (2005).
- Бокс, Лукас (G.E. Box and H.L. Lucas), Biometrika, 46, 77 (1959).
- Вальдмайер (M. Waldmeier), Astron. Mitt. Eidgenoss. Sternwarte Zürich 14, 105 (1935).
- Виллис, Тулунай (D.M. Willis and Y.K. Tulunay), Solar Phys. 64, 237 (1979).
- Ву и др. (C.J. Wu, I.G. Usoskin, N. Krivova, G.A. Kovaltsov, M. Baroni, E. Bard, and S.K. Solanki), Astron. Astrophys. 615, A93 (2018).
- Гершберг Р.Е., Активность солнечного типа звезд главной последовательности (Симферополь: ООО ‘‘Антиква’’, 2015), 614 с.
- Гопалсвами (N. Gopalswamy), Extreme events in geospace (Ed. N. Buzulukova, Elsevier: 2018), p. 37.
- Дмитриева и др. (I.V. Dmitrieva, K.M. Kuzanyan, and V.N. Obridko), Solar Phys. 195, 209 (2000).
- Дмитриенко, Саванов (E.S. Dmitrienko and I.S. Savanov), Astron. Lett. 48, 676 (2022).
- Карачик и др. (N.V. Karachik, A.A. Pevtsov, and Yu.A. Nagovitsyn), MNRAS 488, 3804.
- Кацова и др. (M.M. Katsova, V.N. Obridko, D.D. Sokoloff, and I.M. Livshits), Astrophys. J. 936, 49 (2022).
- Клайвер и др. (E.W. Cliver, C.J. Schrijver, K. Shibata, and I.G. Usoskin), Liv. Rev. Solar. Phys. 19, id.2 (2022).
- Клайвер, Линг (E.W. Cliver and A.G. Ling), Solar Phys. 291, 2763 (2016).
- Клетте и др. (F. Clette, L. Svalgaard, J.M. Vaquero, and E.W. Cliver), Space Sci. Rev. 186, 35 (2014).
- Копп, Шапиро (G. Kopp and A. Shapiro), Solar Phys. 296, 60 (2021).
- Корте, Констебл (M. Korte and C.G. Constable), Earth Planet. Sci. Lett. 236, 348 (2005).
- Кристл и др. (M. Christl, A. Mangini, S. Holzkamper, and C. Spotl), J. Atmosph. Solar-Terrestr. Phys. 66, 313 (2004).
- Кэррингтон (R.C. Carrington), MNRAS 20, 13 (1859).
- Левенберг (K. Levenberg), Quart. Appl. Math. 2, 164 (1944).
- Маквардт (D. Marquardt), SIAM J. Appl. Math. 11, 431 (1963).
- Мандал и др. (S. Mandal, N.A. Krivova, S.K. Solanki, N. Sinha, and D. Banerjee), Astron. Astrophys. 640, id. A78 (2020).
- Наговицын, Георгиева (Yu.A. Nagovitsyn and K. Georgieva), Geomagn. Aeron. 57, 783 (2017).
- Наговицын и др. (Yu.A. Nagovitsyn, A.A. Pevtsov, A.A. Osipova, and V.G. Ivanov), Geomagn. Aeron. 58, 1170 (2018).
- Наговицын и др. (Yu.A. Nagovitsyn, A.A. Pevtsov, and A.A. Osipova), Astron. Nachr. 338, 26 (2017).
- Наговицын и др. (Yu.A. Nagovitsyn, A.A. Pevtsov, and W.C. Livingston), Astrophys. J. Lett. 758, id L20 (2012).
- Наговицын и др. (Yu.A. Nagovitsyn, V.N. Obridko, and A.I. Kuleshova), Solar Phys. 290, 1285 (2015).
- Наговицын и др., Astron. Lett. 42, 773 (2016) [Y.A. Nagovitsyn, A.A. Pevtsov, A.A. Osipova, A.G. Tlatov, E.V. Miletskii, and E.Yu. Nagovitsyna, Astron. Lett. 42, 703 (2016)].
- Наговицын, Иванов (Yu.A. Nagovitsyn, V.G. Ivanov), Solar Phys. 298, 37 (2023).
- Наговицын, Осипова (Yu.A. Nagovitsyn and A.A. Osipova), MNRAS 505, 1206 (2021).
- Наговицын, Певцов (Y.A. Nagovitsyn and A.A. Pevtsov), Astrophys. J. 833, id. 94 (2016).
- Наговицын Ю.А., Кулешова А.И., Астрон. журн. 89, 883 (2012) [Yu.A. Nagovitsyn, A.I. Kuleshova, Astron. Rep. 56, 800 (2012)].
- Огурцов (M.G. Ogurtsov), Adv. Space Res. 64, 1112 (2019).
- Осипова, Наговицын (A.A. Osipova and Yu.A. Nagovitsyn), Geomagn. Aeron. 57, 1092 (2017).
- Пипин и др. (V.V. Pipin, A.G. Kosovichev, V.E. Tomin), Astrophys. J. 949, id. 7 (2023).
- Рамос (A.A. Ramos), Astron. Astrophys. 472, 293 (2007).
- Рейнхольд (T. Reinhold, A.I. Shapiro, S.K. Solanki, B.T. Montet, N.A. Krivova, R.H. Cameron, and E.M. Amazo-Gómez), Science 368 (6490), 518 (2020).
- Саванов (I.S. Savanov), Astron. Lett. 48, 267 (2022).
- Саванов (I.S. Savanov), Astrophys. Bull. 70, 83 (2015).
- Саванов И.С., Аcтрофиз. Бюлл. 70, 308 (2015) [I.S. Savanov, Astrophys. Bull. 70, 292 (2015)].
- Свальгаард, Шаттен (L. Svalgaard and K.H. Schatten), Solar Phys. 291, 2653 (2016).
- Свенсмарк (H. Svensmark), Astron. Geophys. 48, 1.18 (2007).
- Сингх и др. (A.K. Singh, D. Siingh, and R.P. Singh), Atmospheric Environment 45, 3806 (2011).
- Усоскин и др. (I.G. Usoskin, S.K. Solanki, and G.A. Kovaltsov), Astron. Astrophys. 471, 301 (2007).
- Усоскин и др. (I.G. Usoskin, G. Hulot, Y. Gallet, R. Roth, A. Licht, F. Joos, G.A. Kovaltsov, E. Thébault, and A. Khokhlov), Astron. Astrophys. 562, L10 (2014).
- Усоскин и др. (I.G. Usoskin, G.A. Kovaltsov, M. Lockwood, K. Mursula, M. Owens, and S.K. Solanki), Solar Phys. 291, 2685 (2016).
- Фрёлих (C. Fröhlich), Space Sci. Rev. 125, 53 (2006).
- Хаджистергос и др. (T. Chatzistergos, I.G. Usoskin, G.A. Kovaltsov, N.A. Krivova, and S.K. Solanki), Astron. Astrophys. 602, A69 (2017).
- Хатавей (D.H. Hathaway), Liv. Rev. Solar. Phys. 12, id. 4 (2015).
- Хойт, Шаттен (D.V. Hoyt and K.H. Schatten), Solar Phys. 179, 189 (1998).
- Холл и др. (J.C. Hall, M.S. Giampapa, G.W. Henry, J.L. Lean, S.H. Saar, and D.R. Soderblom), Astro2010: The Astronomy and Astrophysics Decadal Survey, Science White Papers, 111 (2009).
- Шрайвер и др. (C.J. Schrijver, K. Kauristie, A.D. Aylward, C.M. Denardini, S.E. Gibson, A. Glover, N. Gopalswamy, M. Grande, et al.), Adv. Space Res. 55, 2745 (2015).
- https://www.sidc.be/silso/DATA/SN_m_tot_V2.0. txt
- https://solarscience.msfc.nasa.gov/greenwch/daily_ area.txt
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