Effects of the chromospheric Lyα line profile shape on the determination of the solar wind HI outflow velocity using the Doppler dimming technique
arXiv:2108.05957 · doi:10.1051/0004-6361/202039821
Abstract
The determination of solar wind outflow velocity is fundamental in order to probe the mechanisms of wind acceleration in the corona. We aim to study, via the Doppler dimming technique, the effects that the chromospheric Lyα line profile shape causes on the determination of the outflow speed of coronal HI atoms. The Doppler dimming technique takes into account the decrease of coronal Lyα radiation in regions where HI atoms flow out in the solar wind. Starting from UV observations (UVCS/SOHO) of the coronal Lyα line and simultaneous measurements of pB (LASCO/SOHO and Mk3/MLSO), we studied the effect of the pumping chromospheric Lyα line profile through measurements from SOHO/SUMER, UVSP/SMM and LPSP/OSO-8, taken from representative on-disk regions and as a function of time during the solar activity cycle. In particular, we considered the effect of four chromospheric line parameters: line width, depth of the central reversal, asymmetry and distance of the peaks. We find that the range of variability of these parameters is of about 50% for the width, 69% for the depth of the central reversal, 35% for the asymmetry, and 50% for the distance of the peaks. Then, we find that the variability of the pumping Lyα profile affects the estimates of the coronal HI velocity by about 9-12%. Therefore, this uncertainty is smaller than other physical quantities uncertainties, and a constant in time and unique shape of the Lyα profile over the solar disk can be adopted in order to estimate the solar wind outflow velocity.
12 pages, 10 figures, 1 table, it will appear in "Astronomy & Astrophysics", accepted for "ESPM-16" and "SWICo 2021", the uploaded abstract is abridged
References in corpus (9)
- The Solar Orbiter mission -- Science overview
- Metis: the Solar Orbiter visible light and ultraviolet coronal imager
- The Solar Orbiter Science Activity Plan: translating solar and heliospheric physics questions into action
- The Ly-alpha profile and center-to-limb variation of the quiet Sun
- Characterization of the slow wind in the outer corona
- Hydrogen Lyman-alpha and Lyman-beta spectral radiance profiles in the quiet Sun
- Quiet-Sun hydrogen Lyman-alpha line profile derived from SOHO/SUMER solar-disk observations
- Evolution of active region outflows throughout an active region lifetime
- Comparison of Solar Fine Structure Observed Simultaneously in Ly-α and Mg II h
Cited by in corpus (4)
- First light observations of the solar wind in the outer corona with the Metis coronagraph
- A Coronal Mass Ejection followed by a prominence eruption and a plasma blob as observed by Solar Orbiter
- Slow wind belt in the quiet solar corona
- Parameter effects on the total intensity of H I Lyα line for a modelled coronal mass ejection and its driven shock