Modeling and experimental study of the 27-day variation of galactic cosmic-ray intensity for a solar-wind velocity depending on heliolongitude
arXiv:1504.00767 · doi:10.1016/j.asr.2009.08.009
Abstract
We develop a three dimensional (3-D) model of the 27-day variation of galactic cosmic ray (GCR) intensity with a spatial variation of the solar wind velocity. A consistent, divergence-free interplanetary magnetic field is derived by solving the corresponding Maxwell equations with a variable solar wind speed, which reproduces in situ observed experimental data for the time interval to be analyzed (24 August 2007-28 February 2008). We perform model calculations for the GCR intensity using the variable solar wind and the corresponding magnetic field. Results are compatible with experimental data; the correlation coefficient between our model predictions and observed 27-day GCR variation is 0.80 0.05.
article published in Advances in Space Research (2010)
Cited by in corpus (6)
- On the 27-day Variations of Cosmic Ray Intensity in Recent Solar Minimum 23/24
- Dependence of the 27-Day Variation of Cosmic Rays on the Global Magnetic Field of the Sun
- Study of the 27-day variations in GCR fluxes during 2007-2008 based on PAMELA and ARINA observations
- On the relationship of the 27-day variations of the solar wind velocity and galactic cosmic ray intensity in minimum epoch of solar activity
- Recurrence of galactic cosmic rays intensity and anisotropy in solar minima 23/24 and 24/25 by ACE/CRIS, STEREO, SOHO/EPHIN and neutron monitors. Fourier and wavelet analysis. Dedicated to the Memory of Michael Alania
- An ACE/CRIS-observation-based Galactic Cosmic Rays heavy nuclei spectra model II