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Space weather: the solar perspective -- an update to Schwenn (2006)

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arxiv 2104.04261 v1 pith:Z5H2P6XL submitted 2021-04-09 astro-ph.SR physics.space-ph

classification astro-ph.SRphysics.space-ph
keywords solarspaceweatherphenomenacmesinterplanetarylaunchedperspective
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The Sun, as an active star, is the driver of energetic phenomena that structure interplanetary space and affect planetary atmospheres. The effects of Space Weather on Earth and the solar system is of increasing importance as human spaceflight is preparing for lunar and Mars missions. This review is focusing on the solar perspective of the Space Weather relevant phenomena, coronal mass ejections (CMEs), flares, solar energetic particles (SEPs), and solar wind stream interaction regions (SIR). With the advent of the STEREO mission (launched in 2006), literally, new perspectives were provided that enabled for the first time to study coronal structures and the evolution of activity phenomena in three dimensions. New imaging capabilities, covering the entire Sun-Earth distance range, allowed to seamlessly connect CMEs and their interplanetary counterparts measured in-situ (so called ICMEs). This vastly increased our knowledge and understanding of the dynamics of interplanetary space due to solar activity and fostered the development of Space Weather forecasting models. Moreover, we are facing challenging times gathering new data from two extraordinary missions, NASA's Parker Solar Probe (launched in 2018) and ESA's Solar Orbiter (launched in 2020), that will in the near future provide more detailed insight into the solar wind evolution and image CMEs from view points never approached before. The current review builds upon the Living Reviews paper by Schwenn from 2006, updating on the Space Weather relevant CME-flare-SEP phenomena from the solar perspective, as observed from multiple viewpoints and their concomitant solar surface signatures.

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Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Statistical insights on the decorrelation lengths of solar wind parameters at L1 point under varying conditions

    astro-ph.SR 2026-08 conditional novelty 6.0 of 10

    Using ACE and Wind measurements, the authors report decorrelation lengths from ~270 RE (Bz in stream interaction regions) to ~8700 RE (bulk speed), with composition the least coherent parameter.

  2. Constraining the radial decay timescale of solar surface magnetic field through a comparative study of data-assimilative 2D surface flux transport and 3D dynamo models

    astro-ph.SR 2026-07 conditional novelty 6.0 of 10

    A comparative analysis of 2D surface flux transport and 3D dynamo models yields a mode-dependent radial decay spectrum with effective timescales τ≈2 yr (l=8) for magnetogram assimilation and τ≈7 yr (dipole) for active...

  3. Type II radio bursts and space weather phenomena: A statistical study

    astro-ph.SR 2025-07 conditional novelty 6.0 of 10

    During solar cycle 24, 518 type II radio bursts split into metric-only, metric+DH, and DH-only show 71-77% association with flares and CMEs but much weaker association with interplanetary shocks, particles, and geomag...

  4. CME Observations -- from Sun to Impact on Geospace

    astro-ph.SR 2025-01 unverdicted novelty 1.0 of 10

    A short review connecting solar observations of coronal mass ejections to their interplanetary propagation and geospace impacts.

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