CMEs in the Heliosphere: I. A Statistical Analysis of the Observational Properties of CMEs Detected in the Heliosphere from 2007 to 2017 by STEREO/HI-1
R. A. Harrison, J. A. Davies, D. Barnes, J. P. Byrne, C. H. Perry, V., Bothmer, J. P. Eastwood, P. T. Gallagher, E. K. J. Kilpua, C. M\"ostl, L., Rodriguez, A. P. Rouillard, D. Odstrcil

TL;DR
This study provides a comprehensive statistical analysis of heliospheric CMEs observed by STEREO/HI-1 from 2007 to 2017, revealing their occurrence patterns, latitudinal distribution, and correlation with solar activity, enhancing understanding of CME propagation and solar source regions.
Contribution
It offers the first extensive statistical characterization of CMEs in the heliosphere using STEREO/HI-1 data, comparing their properties with coronal observations and sunspot activity.
Findings
CME rates correlate with sunspot numbers.
CME widths increase during solar maximum.
Latitudinal launch sites vary with solar cycle phase.
Abstract
We present a statistical analysis of coronal mass ejections (CMEs) imaged by the Heliospheric Imager (HI) instruments aboard NASAs twin-spacecraft STEREO mission between April 2007 and August 2017 for STEREO-A and between April 2007 and September 2014 for STEREO-B. The analysis exploits a catalogue that was generated within the FP7 HELCATS project. Here, we focus on the observational characteristics of CMEs imaged in the heliosphere by the inner (HI-1) cameras. More specifically, in this paper we present distributions of the basic observational parameters - namely occurrence frequency, central position angle (PA) and PA span - derived from nearly 2000 detections of CMEs in the heliosphere by HI-1 on STEREO-A or STEREO-B from the minimum between Solar Cycles 23 and 24 to the maximum of Cycle 24; STEREO-A analysis includes a further 158 CME detections from the descending phase of Cycle…
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