Continued activity of the 25th cycle: largest in 20 years. Ground-level enhancement and Forbush decrease

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Autori principali: Sargsyan, B., Chilingarian, A.
Natura: Preprint
Pubblicazione: 2026
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author Sargsyan, B.
Chilingarian, A.
author_facet Sargsyan, B.
Chilingarian, A.
contents After a very calm 24th solar activity cycle, the 25th cycle has already seen several interesting events. A Ground Level Enhancement GLE77 was observed on 11 November 2025 following an X5.1 class solar flare. A strong Forbush decrease occurred on 19 and 20 January 2026 during one of the most intense geomagnetic storms of Solar Cycle 25. Events were recorded coherently by the global neutron monitor network and by SEVAN detectors at multiple altitudes. Using spectrometric capabilities, we reconstruct energy spectra of missing neutrons and muons during the FD and compare them with corresponding spectra measured during GLE77. The analysis demonstrates that FD and GLE signatures are intrinsically asymmetric. FDs selectively suppress the preexisting galactic cosmic ray population, whereas GLEs introduce an additional, harder particle component. Neutron and muon channels exhibit markedly different spectral behavior, particularly at higher deposited energies, reflecting their sensitivity to different primary energy ranges. These results show that combined NM and SEVAN observations provide robust, complementary diagnostics of rigidity dependent cosmic ray modulation during extreme heliospheric disturbances.
format Preprint
id arxiv_https___arxiv_org_abs_2601_19289
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Continued activity of the 25th cycle: largest in 20 years. Ground-level enhancement and Forbush decrease
Sargsyan, B.
Chilingarian, A.
Atmospheric and Oceanic Physics
Solar and Stellar Astrophysics
After a very calm 24th solar activity cycle, the 25th cycle has already seen several interesting events. A Ground Level Enhancement GLE77 was observed on 11 November 2025 following an X5.1 class solar flare. A strong Forbush decrease occurred on 19 and 20 January 2026 during one of the most intense geomagnetic storms of Solar Cycle 25. Events were recorded coherently by the global neutron monitor network and by SEVAN detectors at multiple altitudes. Using spectrometric capabilities, we reconstruct energy spectra of missing neutrons and muons during the FD and compare them with corresponding spectra measured during GLE77. The analysis demonstrates that FD and GLE signatures are intrinsically asymmetric. FDs selectively suppress the preexisting galactic cosmic ray population, whereas GLEs introduce an additional, harder particle component. Neutron and muon channels exhibit markedly different spectral behavior, particularly at higher deposited energies, reflecting their sensitivity to different primary energy ranges. These results show that combined NM and SEVAN observations provide robust, complementary diagnostics of rigidity dependent cosmic ray modulation during extreme heliospheric disturbances.
title Continued activity of the 25th cycle: largest in 20 years. Ground-level enhancement and Forbush decrease
topic Atmospheric and Oceanic Physics
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2601.19289