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Evidence from Galactic Cosmic Rays That the Sun Has Likely Entered A Secular Minimum in Solar ActivitySince the beginning of the space age, the Sun has been in a multi-cycle period of elevated activity (secular maximum). This secular maximum is the longest in the last 9300 years. Since the end of solar cycle 21 (SC21), however, the Sun has shown a decline in over-all activity, which has remarkably increased the fluxes of galactic cosmic rays (GCRs). Here, we investigate the correlation between the modulation of GCRs, the heliospheric magnetic field, and solar wind speed for the last 24 solar cycles to find trends that can potentially be used to predict future solar activity. Specifically, we develop a tool for predicting future magnetic field intensity, based on the hysteresis in the GCR variation, during the last phases of the current cycle. This method estimates that SC25 will be as weak as or weaker than SC24. This would mean that the Sun has likely entered a secular minimum, which, according to historical records, should last for another two cycles (SC2527and SC26).
Document ID
20220002976
Acquisition Source
2230 Support
Document Type
Accepted Manuscript (Version with final changes)
Authors
F Rahmanifard ORCID
(University of New Hampshire Durham, New Hampshire, United States)
A P Jordan
(University of New Hampshire Durham, New Hampshire, United States)
W C de Wet ORCID
(University of New Hampshire Durham, New Hampshire, United States)
N A Schwadron ORCID
(University of New Hampshire Durham, New Hampshire, United States)
J K Wilson ORCID
(University of New Hampshire Durham, New Hampshire, United States)
M J Owens ORCID
(University of Reading Reading, United Kingdom)
H E Spence ORCID
(University of New Hampshire Durham, New Hampshire, United States)
P Riley ORCID
(Predictive Science (United States) San Diego, California, United States)
Date Acquired
February 22, 2022
Publication Date
December 16, 2021
Publication Information
Publication: Space Weather
Publisher: American Geophysical Union
Volume: 20
Issue: 2
Issue Publication Date: February 1, 2022
ISSN: 1539-4956
e-ISSN: 1542-7390
Subject Category
Solar Physics
Funding Number(s)
CONTRACT_GRANT: 80NSSC20M0021
CONTRACT_GRANT: NNG11PA03C
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
Keywords
Solar cycles
Space weather
Cycle 25
Secular minimum
GCRs
Solar activity
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