The largest Forbush decrease in 20 years: Preliminary analysis of SEVAN network observations

Fuente: arXiv
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Autores principales: Chilingarian, A., Karapetyan, T., Sargsyan, B.
Formato: Preprint
Publicado: 2025
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author Chilingarian, A.
Karapetyan, T.
Sargsyan, B.
author_facet Chilingarian, A.
Karapetyan, T.
Sargsyan, B.
contents We present a preliminary analysis of the largest Forbush Decrease (FD) observed in solar cycle 25 using SEVAN network data. Triggered by consecutive Earth-directed CMEs on May 30 and 31, 2025, this event produced two distinct FD minima and a prolonged recovery, with significant anisotropies in cosmic ray response across the network. The timing of interplanetary shock arrivals was confirmed by SSC signatures at 05:22 UTC on June 1 and 10:19 UTC on June 2, marking the onset of each FD phase. The depth and temporal structure of the FD varied across SEVAN detectors, providing insights into the complex heliospheric and magnetospheric dynamics during this multi-CME event.
format Preprint
id arxiv_https___arxiv_org_abs_2506_17917
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The largest Forbush decrease in 20 years: Preliminary analysis of SEVAN network observations
Chilingarian, A.
Karapetyan, T.
Sargsyan, B.
Solar and Stellar Astrophysics
Atmospheric and Oceanic Physics
Space Physics
We present a preliminary analysis of the largest Forbush Decrease (FD) observed in solar cycle 25 using SEVAN network data. Triggered by consecutive Earth-directed CMEs on May 30 and 31, 2025, this event produced two distinct FD minima and a prolonged recovery, with significant anisotropies in cosmic ray response across the network. The timing of interplanetary shock arrivals was confirmed by SSC signatures at 05:22 UTC on June 1 and 10:19 UTC on June 2, marking the onset of each FD phase. The depth and temporal structure of the FD varied across SEVAN detectors, providing insights into the complex heliospheric and magnetospheric dynamics during this multi-CME event.
title The largest Forbush decrease in 20 years: Preliminary analysis of SEVAN network observations
topic Solar and Stellar Astrophysics
Atmospheric and Oceanic Physics
Space Physics
url https://arxiv.org/abs/2506.17917