16 citations · 35 across the 7 of their papers we have counts for
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Is There a Synchronizing Influence of Planets on Solar and Stellar Cyclic Activity?
V. N. Obridko, M. M. Katsova, D. D. Sokoloff +1
This work continues our research of connection between the long-term activity of stars and their planets. We analyze new data on the previously considered two dozen solar-type star…
Gnevyshev gap in the large-scale magnetic field
V. N. Obridko, A. S. Shibalova, D. D. Sokoloff
The phenomenon of the Gnevyshev gap was first identified in the solar-corona irradiance data (green line). Later, it was studied in the sunspot, coronal, and heliospheric data. We…
Cyclic variations of the structure and energetics of solar magnetic fields
V. N. Obridko, A. S. Shibalova, D. D. Sokoloff
The solar cycle is a complex phenomenon, a comprehensive understanding of which requires the study of various tracers. Here, we consider the solar cycle as manifested in the harmon…
Estimates of the Height and Date of the 25th Cycle of Solar Activity
V. N. Obridko, D. D. Sokoloff, M. M. Katsova
Further development of the work of Obridko et al. [1] based on recent data confirms the assumption that the 25th cycle of solar activity is a medium-low cycle. Its height is expect…
The Extended Solar Cycle and Asymmetry of the Large-Scale Magnetic Field
V. N. Obridko, A. S. Shibalova, D. D. Sokoloff
Traditionally, the solar activity cycle is thought as an interplay of the main dipole component of the solar poloidal magnetic field and the toroidal magnetic field. However, the r…
Solar and stellar activity cycles -- no synchronization with exoplanets
V. N. Obridko, M. M. Katsova, D. D. Sokoloff
Cyclic activity on the Sun and stars is primarily explained by generation of the magnetic field by a dynamo mechanism, which converts the energy of the poloidal field into the ener…