Open questions on prominences from coordinated observations by IRIS, Hinode, SDO/AIA, THEMIS, and the Meudon/MSDP
Brigitte Schmieder, Hui Tian, Arturo Lopez Ariste, Nicole Mein, Pierre, Mein, Kevin Dalmasse, Leon Golub

TL;DR
This study uses coordinated multi-instrument observations to analyze the magnetic and plasma dynamics of a solar prominence, revealing complex turbulence, magnetic field orientation, and plasma flow characteristics.
Contribution
It provides new insights into prominence dynamics by combining high-cadence spectral data with magnetic field measurements from multiple space- and ground-based observatories.
Findings
Magnetic field is globally horizontal with 8-15 Gauss strength.
Turbulent-like motions are observed without organized structure.
High-velocity plasma condensations suggest complex prominence structure.
Abstract
Context. A large prominence was observed on September 24, 2013, for three hours (12:12 UT -15:12 UT) with the newly launched (June 2013) Interface Region Imaging Spectrograph (IRIS), THEMIS (Tenerife), the Hinode Solar Optical Telescope (SOT), the Solar Dynamic Observatory Atmospheric Imaging Assembly (SDO/AIA), and the Multichannel Subtractive Double Pass spectrograph (MSDP) in the Meudon Solar Tower. Aims. The aim of this work is to study the dynamics of the prominence fine structures in multiple wavelengths to understand their formation. Methods. The spectrographs IRIS and MSDP provided line profiles with a high cadence in Mg II and in Halpha lines. Results. The magnetic field is found to be globally horizontal with a relatively weak field strength (8-15 Gauss). The Ca II movie reveals turbulent-like motion that is not organized in specific parts of the prominence. On the other hand,…
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