Doppler shifts of spectral lines formed in the solar transition region and corona
Yajie Chen, Hardi Peter, Damien Przybylski, Hui Tian, Jiale Zhang

TL;DR
This study uses a 3D radiation MHD model to analyze Doppler shifts in spectral lines from the solar transition region and corona, successfully reproducing observed red- and blueshift patterns and identifying multiple contributing processes.
Contribution
The paper presents a comprehensive 3D MHD simulation that reproduces observed Doppler shift patterns and identifies multiple physical processes responsible for these shifts in the solar atmosphere.
Findings
Model reproduces observed Doppler shift transition from red to blue.
Imbalance of red vs. blue shifts in the transition region is about 80% to 20%.
Multiple processes, including pressure effects and plasma boundaries, contribute to Doppler shifts.
Abstract
Context. Emission lines formed in the transition region and corona show dominantly redshifts and blueshifts, respectively. Aims. We investigate the Doppler shifts in a 3D radiation MHD model of the quiet Sun and compare these to observed properties. We concentrate on Si IV 1394 A originating in the transition region and examine the Doppler shifts of several other spectral lines at different formation temperatures. Methods. We construct a radiation MHD model extending from the upper convection zone to the lower corona using the MURaM code. In this quiet Sun model the magnetic field is self-consistently maintained by the action of a small-scale dynamo. We synthesize the profiles of several optically thin emission lines, formed at temperatures from the transition region into the corona. We investigate the spatial structure and coverage of red- and blueshifts and how this changes with…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Ionosphere and magnetosphere dynamics · Stellar, planetary, and galactic studies
