Numerical Modeling of Coronal Mass Ejections Based on Various Pre-Event Model Atmospheres
Wu, S. T.; Poletto, G.; Suess, S. T.; Wang, A. H.
United States, Italy
Abstract
We examine how the initial state (pre-event corona) affects the numerical MHD simulation for a coronal mass ejection (CME). Earlier simulations based on a pre-event corona with a homogeneous density and temperature distribution at the lower boundary (i.e., solar surface) have been used to analyze the role of streamer properties in determining the characteristics of loop-like transients. The present paper extends these studies to show how a broader class of global coronal properties leads not only to different types of CMEs, but also modifies the adjacent quiet corona and/or coronal holes.