2018
DOI: 10.1029/2018sw001912
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Solar Sources of Interplanetary Magnetic Clouds Leading to Helicity Prediction

Abstract: This study identifies the solar origins of magnetic clouds that are observed at 1 AU and predicts the helical handedness of these clouds from the solar surface magnetic fields. We started with the magnetic clouds listed by the Magnetic Field Investigation (MFI) team supporting NASA's Wind spacecraft in what is known as the MFI table and worked backward in time to identify solar events that produced these clouds. Our methods utilize magnetograms from the Helioseismic and Magnetic Imager instrument on the Solar … Show more

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“…For instance, the helicity dissipation time in a typical coronal loop exceeds 10 5 years (Berger & Field, 1984). Such a conservation principle has encouraged decades of efforts to compare ICME properties with their associated solar surface regions (Bothmer & Rust, 1997;Pal, 2022;Ulrich et al, 2018). In addition, the generation (Forbes & Priest, 1995;Qiu et al, 2007), distribution (see De Keyser et al (2005), Chapter 8.6), and transport (Berger & Field, 1984;Manchester et al, 2017) of helicity in (I)CMEs have been extensively investigated.…”
Section: Introductionmentioning
confidence: 99%
“…For instance, the helicity dissipation time in a typical coronal loop exceeds 10 5 years (Berger & Field, 1984). Such a conservation principle has encouraged decades of efforts to compare ICME properties with their associated solar surface regions (Bothmer & Rust, 1997;Pal, 2022;Ulrich et al, 2018). In addition, the generation (Forbes & Priest, 1995;Qiu et al, 2007), distribution (see De Keyser et al (2005), Chapter 8.6), and transport (Berger & Field, 1984;Manchester et al, 2017) of helicity in (I)CMEs have been extensively investigated.…”
Section: Introductionmentioning
confidence: 99%