Can Superflares Occur on the Sun? A View from Dynamo Theory


Цитировать

Полный текст

Открытый доступ Открытый доступ
Доступ закрыт Доступ предоставлен
Доступ закрыт Только для подписчиков

Аннотация

Recent data from the Kepler mission has revealed the occurrence of superflares in Sun-like stars which exceed by far any observed solar flares in released energy. Radionuclide data do not provide evidence for occurrence of superflares on the Sun over the past eleven millennia. Stellar data for a subgroup of superflaring Kepler stars are analysed in an attempt to find possible progenitors of their abnormal magnetic activity. A natural idea is that the dynamo mechanism in superflaring stars differs in some respect from that in the Sun. We search for a difference in the dynamo-related parameters between superflaring stars and the Sun to suggest a dynamo mechanism as close as possible to the conventional solar/stellar dynamo but capable of providing much higher magnetic energy. Dynamo based on joint action of differential rotation and mirror asymmetric motions can in principle result in excitation of two types of magnetic fields. First of all, it is well-known in solar physics dynamo waves. The point is that another magnetic configuration with initial growth and further stabilisation can also be excited. For comparable conditions, magnetic field of second configuration is much stronger than that of the first one just because dynamo does not spend its energy for periodic magnetic field inversions but uses it for magnetic field growth. We analysed available data from the Kepler mission concerning the superflaring stars in order to find tracers of anomalous magnetic activity. As suggested in a recent paper [1], we find that anti-solar differential rotation or anti-solar sign of the mirror-asymmetry of stellar convection can provide the desired strong magnetic field in dynamo models. We confirm this concept by numerical models of stellar dynamos with corresponding governing parameters. We conclude that the proposed mechanism can plausibly explain the superflaring events at least for some cool stars, including binaries, subgiants and, possibly, low-mass stars and young rapid rotators.

Об авторах

M. Katsova

Sternberg State Astronomical Institute

Автор, ответственный за переписку.
Email: maria@sai.msu.ru
Россия, Moscow, 119991

L. Kitchatinov

Institute for Solar-Terrestrial Physics; Pulkovo Astronomical Observatory

Email: maria@sai.msu.ru
Россия, Irkutsk, 664033; St. Petersburg, 196140

M. Livshits

IZMIRAN

Email: maria@sai.msu.ru
Россия, Troitsk, Moscow, 108840

D. Moss

School of Mathematics

Email: maria@sai.msu.ru
Великобритания, Oxford Road, Manchester, M13 9PL

D. Sokoloff

Department of Physics

Email: maria@sai.msu.ru
Россия, Moscow, 119992

I. Usoskin

Space Climate Research Unit and Sodankylä Geophysical Observatory

Email: maria@sai.msu.ru
Финляндия, Oulu, 90014

Дополнительные файлы

Доп. файлы
Действие
1. JATS XML

© Pleiades Publishing, Ltd., 2018

Согласие на обработку персональных данных

 

Используя сайт https://journals.rcsi.science, я (далее – «Пользователь» или «Субъект персональных данных») даю согласие на обработку персональных данных на этом сайте (текст Согласия) и на обработку персональных данных с помощью сервиса «Яндекс.Метрика» (текст Согласия).