activity
20162022
most citedCatalogue of 55-80 MeV solar proton events extending through solar cycles 23 and 24

55 citations · 118 across the 4 of their papers we have counts for

collaborators

7 papers

astro-ph.SR2022

The Probabilistic Solar Particle Event foRecasting (PROSPER) Model

Athanasios Papaioannou, Rami Vainio, Osku Raukunen +6

The Probabilistic Solar Particle Event foRecasting (PROSPER) model predicts the probability of occurrence and the expected peak flux of Solar Energetic Particle (SEP) events. Predi…

astro-ph.SR202138 cited

New reconstruction of event-integrated spectra (spectral fluences) for major solar energetic particle events

Sergey A. Koldobskiy, Osku Raukunen, Rami Vainio +2

Fluences of solar energetic particles (SEPs) are not easy to evaluate, especially for high-energy events (i.e. ground-level enhancements, GLEs). Earlier estimates of event-integrat…

physics.space-ph2018

First analysis of GLE 72 event on 10 September 2017: Spectral and anisotropy characteristics

A. L. Mishev, I. G. Usoskin, O. Raukunen +4

Using neutron monitor and space-borne data we performed an analysis of the second ground level enhancement of solar cycle 24, namely the event of 10 September 2017 (GLE 72) and der…

astro-ph.SR2018

Updated Model of the Solar Energetic Proton Environment in Space

Piers Jiggens, Daniel Heynderickx, Ingmar Sandberg +3

The Solar Accumulated and Peak Proton and Heavy Ion Radiation Environment (SAPPHIRE) model provides environment specification outputs for all aspects of the Solar Energetic Particl…

physics.space-ph201755 cited

Catalogue of 55-80 MeV solar proton events extending through solar cycles 23 and 24

Miikka Paassilta, Osku Raukunen, Rami Vainio +9

We present a new catalogue of solar energetic particle events near the Earth, covering solar cycle 23 and the majority of solar cycle 24 (1996-2016), based on the 55-80 MeV proton…

astro-ph.SR201725 cited

Why is solar cycle 24 an inefficient producer of high-energy particle events?

Rami Vainio, Osku Raukunen, Allan J. Tylka +2

The aim of the study is to investigate the reason for the low productivity of high-energy SEPs in the present solar cycle. We employ scaling laws derived from diffusive shock accel…