Modulation of galactic protons in the heliosphere during the unusual solar minimum of 2006 to 2009
arXiv:1302.1284 · doi:10.1007/s11207-013-0324-6
Abstract
The last solar minimum activity period, and the consequent minimum modulation conditions for cosmic rays, was unusual. The highest levels of galactic protons were recorded at Earth in late 2009 in contrast to expectations. Proton spectra observed for 2006 to 2009 from the PAMELA cosmic ray detector on-board the Resurs-DK1 satellite are presented together with the solutions of a comprehensive numerical model for the solar modulation of cosmic rays. The model is used to determine what mechanisms were mainly responsible for the modulation of protons during this period, and why the observed spectrum for 2009 was the highest ever recorded. From mid-2006 until December 2009 we find that the spectra became significantly softer because increasingly more low energy protons had reached Earth. To simulate this effect, the rigidity dependence of the diffusion coefficients had to decrease significantly below ~3 GeV. The modulation minimum period of 2009 can thus be described as relatively more "diffusion dominated" than previous solar minima. However, we illustrate that drifts still had played a significant role but that the observable modulation effects were not as well correlated with the waviness of the heliospheric current sheet as before. Protons still experienced global gradient and curvature drifts as the heliospheric magnetic field had decreased significantly until the end of 2009, in contrast to the moderate decreases observed during previous minimum periods. We conclude that all modulation processes contributed to the observed increases in the proton spectra for this period, exhibiting an intriguing interplay of these major mechanisms.
References in corpus (4)
- Observation of an anomalous positron abundance in the cosmic radiation
- A new measurement of the antiproton-to-proton flux ratio up to 100 GeV in the cosmic radiation
- Time dependence of the proton flux measured by PAMELA during the July 2006 - December 2009 solar minimum
- Solar Modulation of Cosmic Rays during the Declining and Minimum Phases of Solar Cycle 23: Comparison with Past Three Solar Cycles
Cited by in corpus (57)
- Solar Modulation of Cosmic Rays
- Heliospheric modulation of cosmic rays during the neutron monitor era: Calibration using PAMELA data for 2006--2010
- Time dependence of the e^- flux measured by PAMELA during the July 2006 - December 2009 solar minimum
- Propagation of cosmic rays in the AMS-02 era
- Anisotropy in Cosmic-Ray Arrival Directions in the Southern Hemisphere with Six Years of Data from the IceCube Detector
- New very local interstellar spectra for electrons, positrons, protons and light cosmic ray nuclei
- Solar energetic particle events observed by the PAMELA mission
- Proton fluxes measured by the PAMELA experiment from the minimum to the maximum solar activity for the 24th solar cycle
- Solar Modulation of the Proton Local Interstellar Spectrum with AMS-02, Voyager 1 and PAMELA
- Propagation of Cosmic Rays in Heliosphere: the HelMod Model
- Solar energetic particle access to distant longitudes through turbulent field-line meandering
- Constraints on particle dark matter from cosmic-ray antiprotons
- Galactic cosmic-ray propagation in the light of AMS-02: I. Analysis of protons, helium, and antiprotons
- Numerical modeling of galactic cosmic ray proton and helium observed by AMS-02 during the solar maximum of Solar Cycle 24
- Very local interstellar spectra for galactic electrons, protons and helium
- Time-Dependent Modulation of Cosmic Rays in the Heliosphere
- New local interstellar spectra for protons, Helium and Carbon derived from PAMELA and Voyager 1 observations
- SOLARPROP: Charge-sign Dependent Solar Modulation for Everyone
- Revisit of cosmic ray antiprotons from dark matter annihilation with updated constraints on the background model from AMS-02 and collider data
- Modulation of Galactic Cosmic Rays in the Inner Heliosphere over Solar Cycles
- Global gradients for cosmic-ray protons in the heliosphere during the solar minimum of cycle 23/24
- The effect of magnetic field modifications on the modulation of cosmic rays in the heliosphere
- Numerical modeling of cosmic rays in the heliosphere: Analysis of proton data from AMS-02 and PAMELA
- Modulation of Galactic Cosmic Rays in the Inner Heliosphere, Comparing with PAMELA Measurements
- Study of Cosmic-Ray Modulation during the Recent Unusual Minimum and Mini Maximum of Solar Cycle 24
- Spatial gradients of GCR protons in the inner heliosphere derived from Ulysses COSPIN/KET and PAMELA measurements
- Annual Cosmic Ray Spectra from 250 MeV up to 1.6 GeV from 1995 - 2014 Measured With the Electron Proton Helium Instrument onboard SOHO
- How are Forbush decreases related to interplanetary magnetic field enhancements ?
- Modeling of Heliospheric Modulation of Cosmic-ray Positrons in a Very Quiet Heliosphere
- New evidence for charge-sign dependent modulation during the solar minimum of 2006 to 2009
- Evidence of energy and charge sign dependence of the recovery time for the December 2006 Forbush event measured by the PAMELA experiment
- Time dependence of the flux of helium nuclei in cosmic rays measured by the PAMELA experiment between July 2006 and December 2009
- The Influence of Different Turbulence Models on the Diffusion Coefficients of Energetic Particles
- Energetic particle transport across the mean magnetic field: before diffusion
- Time and Charge-Sign Dependence of the Heliospheric Modulation of Cosmic Rays
- Time dependent solar modulation of cosmic rays from solar minimum to solar maximum
- Helium fluxes measured by the PAMELA experiment from the minimum to the maximum solar activity for solar cycle 24
- Evolution of coronal mass ejections and the corresponding Forbush decreases: modelling vs multi-spacecraft observations
- Perpendicular diffusion of energetic particles in noisy reduced magnetohydrodynamic turbulence
- Unfolding Drift Effects for Cosmic Rays over the Period of the Sun's Magnetic Field Reversal
- A local interstellar spectrum for galactic electrons
- Radial Evolution of the April 2020 Stealth Coronal Mass Ejection between 0.8 and 1 AU -- A Comparison of Forbush Decreases at Solar Orbiter and Earth
- Antiproton Limits on Decaying Gravitino Dark Matter
- Late decaying 2-component dark matter scenario as an explanation of the AMS-02 positron excess
- Testing universality of cosmic-ray acceleration with proton/helium data from AMS and Voyager-1
- The implicit contribution of slab modes to the perpendicular diffusion coefficient of particles interacting with two-component turbulence
- Magnetic Cloud and Sheath in the Ground-Level Enhancement Event of 2000 July 14. II. Effects on the Forbush Decrease
- Modulation of cosmic ray anti-protons in the heliosphere: simulations for a solar cycle
- Observation of TeV-PeV cosmic ray anisotropy with IceCube, IceTop and AMANDA
- Current status and new perspectives on cosmic ray deuterons
- The Highest Recorded Proton Spectrum at Earth since the Beginning of the Space Age
- Propagation Times and Energy Losses of Cosmic Protons and Antiprotons in Interplanetary Space
- A forecasting framework for galactic cosmic ray flux in space weather applications
- On the causes and mechanisms of the long-term variations in the GCR characteristics
- Probing solar modulation of AMS-02 time-dependent D, He and He fluxes with modified force field approximation
- Solar modulation of cosmic proton and helium with AMS-02
- The effect of turbulence strength on meandering field lines and Solar Energetic Particle event extents