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Alessandro Ippolito

Publications and source records attributed to Alessandro Ippolito.

2 recordsLinked to original sources

On the Effect of Large Scale Structures and Turbulence on Solar Eruptive Events: The Cross-Scale Challenge for Space Weather

Coronal Mass Ejections (CMEs) are among the most powerful drivers of space weather, yet their prediction remains elusive. A fundamental obstacle is the problem's multiscale nature: large-scale magnetohydrodynamic models do not resolve the turbulent fluctuations that govern particle transport and magnetic connectivity. We present a new model that combines a MICroscopic diffusion approach of turbulence with MACroscopic EUHFORIA simulations (MICMAC) to address the cross-scale challenge of space weather. By incorporating turbulence properties into such small-scale Monte Carlo simulations, we describe an extreme CME event, tracing both magnetic field lines and 100 MeV protons from the CME-driven shock to 1 AU. We find that turbulence dramatically broadens and distorts the magnetic connection between the CME nose and Earth, producing footpoint distributions that are highly non-Gaussian, anisotropic, and patchy. MICMAC suggests that the distribution's enstrophy (non-Gaussianity) grows as the CME approaches Earth, signaling anomalous diffusive behavior. A simple shear-layer toy model reproduces the observed in-plane anisotropy, suggesting that local current sheet geometry imprints a persistent memory on the turbulent field. Our results demonstrate that cross-scale coupling between the CME's large-scale structure and ambient turbulence must be accounted for in space weather models. We discuss implications for SEP forecasting and interpreting multi-spacecraft observations.

astro-ph.SR

Effects of Solar Eclipse of March 20, 2015 on the Ionosphere

The effects of the solar eclipse of March 20, 2015 on different ionospheric layers were studied, using vertical ionospheric soundings from the ionosondes of Rome (41.8N, 12.5E), Gibilmanna (37.9N, 14.0E), and San Vito dei Normanni (40.6N, 18.0E). The responses of the critical frequencies were investigated during the solar eclipse, and the formulations used for their estimation were corrected taking into account the decreased solar irradiance. This effect was modeled as a Solar Obscuration Factor (SOF) and comparisons with experimental values were performed. A further study on the occurrence of the sporadic E layer during the eclipse is presented. When ionogram analysis is limited to 3 days before and 3 days after the eclipse, the appearance of the sporadic E layer seems to be related to the eclipse. However, when a longer range of days before and after the eclipse event are taken into account this phenomenon does not appear so clear. The behavior of a regional adaptive and assimilative 3D ionospheric model was also tested, assimilating plasma frequency profiles fp(h). Studying the behavior of the model in such unusual conditions enabled the introduction of corrections to the foE, foF1, and foF2 formulations, improving the performances of the model itself.

physics.geo-ph