Study of Cosmic-Ray Modulation during the Recent Unusual Minimum and Mini Maximum of Solar Cycle 24
arXiv:1507.07917 · doi:10.1007/s11207-015-0753-5
Abstract
After a prolonged and deep solar minimum at the end of Cycle 23, the current Solar Cycle 24 is one of the lowest cycles. These two periods of deep minimum and mini maximum are separated by a period of increasing solar activity. We study the cosmic-ray intensity variation in relation with the solar activity, heliospheric plasma and field parameters, including the heliospheric current sheet, during these three periods (phases) of different activity level and nature: (a) a deep minimum, (b) an increasing activity period and (c) a mini maximum. We use neutron monitor data from stations located around the globe to study the rigidity dependence on modulation during the two extremes, i.e., minimum and maximum. We also study the time lag between the cosmic-ray intensity and various solar and interplanetary parameters separately during the three activity phases. We also analyze the role of various parameters, including the current sheet tilt, in modulating the cosmic-ray intensity during the three different phases. Their relative importance and the implications of our results are also discussed.
23 pages include 13 figures and 6 tables. Accepted to Solar Physics (2015)
References in corpus (2)
Cited by in corpus (8)
- Proton fluxes measured by the PAMELA experiment from the minimum to the maximum solar activity for the 24th solar cycle
- Evidence for a Time Lag in Solar Modulation of Galactic Cosmic Rays
- The behaviour of galactic cosmic ray intensity during solar activity cycle 24
- Numerical modeling of cosmic rays in the heliosphere: Analysis of proton data from AMS-02 and PAMELA
- Modeling of Heliospheric Modulation of Cosmic-ray Positrons in a Very Quiet Heliosphere
- Time and Charge-Sign Dependence of the Heliospheric Modulation of Cosmic Rays
- Temporal evolution and rigidity dependence of the solar modulation lag of Galactic cosmic rays
- Observation of a time lag in solar modulation of cosmic rays in the heliosphere