Hydrogen Balmer Line Broadening in Solar and Stellar Flares
arXiv:1702.03321 · doi:10.3847/1538-4357/aa603e
Abstract
The broadening of the hydrogen lines during flares is thought to result from increased charge (electron, proton) density in the flare chromosphere. However, disagreements between theory and modeling prescriptions have precluded an accurate diagnostic of the degree of ionization and compression resulting from flare heating in the chromosphere. To resolve this issue, we have incorporated the unified theory of electric pressure broadening of the hydrogen lines into the non-LTE radiative transfer code RH. This broadening prescription produces a much more realistic spectrum of the quiescent, A0 star Vega compared to the analytic approximations used as a damping parameter in the Voigt profiles. We test recent radiative-hydrodynamic (RHD) simulations of the atmospheric response to high nonthermal electron beam fluxes with the new broadening prescription and find that the Balmer lines are over-broadened at the densest times in the simulations. Adding many simultaneously heated and cooling model loops as a "multithread" model improves the agreement with the observations. We revisit the three-component phenomenological flare model of the YZ CMi Megaflare using recent and new RHD models. The evolution of the broadening, line flux ratios, and continuum flux ratios are well-reproduced by a multithread model with high-flux nonthermal electron beam heating, an extended decay phase model, and a "hot spot" atmosphere heated by an ultrarelativistic electron beam with reasonable filling factors: 0.1%, 1%, and 0.1% of the visible stellar hemisphere, respectively. The new modeling motivates future work to understand the origin of the extended gradual phase emission.
31 pages, 13 figures, 2 tables, accepted for publication in the Astrophysical Journal
References in corpus (22)
- Impulsive phase flare energy transport by large-scale Alfven waves and the electron acceleration problem
- Highly Efficient Modeling of Dynamic Coronal Loops
- Low-Mass Dwarf Template Spectra from the Sloan Digital Sky Survey
- Kepler Flares II: The Temporal Morphology of White-Light Flares on GJ 1243
- First Results from the CHARA Array VII: Long-Baseline Interferometric Measurements of Vega Consistent with a Pole-On, Rapidly Rotating Star
- A White Light Megaflare on the dM4.5e Star YZ CMi
- Radiative Hydrodynamic Models of Optical and Ultraviolet Emission from M Dwarf Flares
- The Atmospheric Response to High Nonthermal Electron Beam Fluxes in Solar Flares I: Modeling the Brightest NUV Footpoints in the X1 Solar Flare of 2014 March 29
- New Insights into White-Light Flare Emission from Radiative-Hydrodynamic Modeling of a Chromospheric Condensation
- On the origin of 3 seismic sources in the proton-rich flare of October 28, 2003
- Propagation of Alfvénic Waves From Corona to Chromosphere and Consequences for Solar Flares
- Multiwavelength observations of a giant flare on CN Leonis I. The chromosphere as seen in the optical spectra
- Hydrogen Balmer Continuum in Solar Flares Detected by the Interface Region Imaging Spectrograph (IRIS)
- A Very Bright, Very Hot, and Very Long Flaring Event from the M Dwarf Binary System DG CVn
- Synchrotron emission from the T Tauri binary system V773 Tau A
- Fine structure of flare ribbons and evolution of electric currents
- Near-Ultraviolet Spectra of Flares on YZ CMi
- A simple model of chromospheric evaporation and condensation driven conductively in a solar flare
- Transition Region and Chromospheric Signatures of Impulsive Heating Events. II. Modeling
- Optical Spectral Observations of a Flickering White-Light Kernel in a C1 Solar Flare
- Dynamics of double layers, ion acceleration and heat flux suppression during solar flares
- Temporal evolution and spatial distribution of white-light flare kernels in a solar flare
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- Spectral signatures of chromospheric condensation in a major solar flare
- Optical and X-ray observations of stellar flares on an active M dwarf AD Leonis with Seimei Telescope, SCAT, NICER and OISTER
- High-resolution spectroscopy of flares and CMES on AD Leo*
- Parameterizations of Chromospheric Condensations in dG and dMe Model Flare Atmospheres
- Modeling Mg II h, k and Triplet Lines at Solar Flare Ribbons
- First Detection of a Strong Magnetic Field on a Bursty Brown Dwarf: Puzzle Solved
- Spectral Evidence for Heating at Large Column Mass in Umbral Solar Flare Kernels I: IRIS NUV Spectra of the X1 Solar Flare of 2014 Oct 25
- The Lightweaver Framework for NLTE Radiative Transfer in Python
- Spectral Characteristics and Formation Height of Off-Limb Flare Ribbons
- The CARMENES search for exoplanets around M dwarfs. Variability of the He I line at 10830 Å
- Statistical Studies of Solar White-Light Flares and Comparisons with Superflares on Solar-type Stars