Assessing the capability of a model-based stellar XUV estimation
arXiv:2408.16216 · doi:10.1051/0004-6361/202450129
Abstract
Stellar XUV (X-ray and extreme ultraviolet) emission drives the heating and chemical reactions in planetary atmospheres and protoplanetary disks, and therefore, a proper estimation of a stellar XUV spectrum is required for their studies. One proposed solution is to estimate stellar atmospheric heating using numerical models, although the validation was restricted to the Sun over a limited parameter range. In this study, we extend the validation of the model by testing it with the Sun and three young, nearby solar-type stars with available XUV observational data. We first test the model with the solar observations, examining its accuracy in activity minimum and maximum phases, its dependence on loop length, the effect of loop length superposition, and its sensitivity to elemental abundance. We confirm that the model spectrum is mostly accurate both in activity minimum and maximum, although the high-energy X-rays (< 1 nm) are underestimated in the activity maximum. Applying the model to young solar-type stars, we find that it can reproduce the observed XUV spectra within a factor of 3 in the range of 1-30 nm for stars with magnetic flux up to 100 times that of the Sun. For a star with 300 times the solar magnetic flux, although the raw numerical data show a systematically lower spectrum than observed, the spectra are in good agreement once corrected for the effect of insufficient resolution in the transition region. For all young solar-type stars, high-energy X-rays (< 1 nm) are significantly underestimated, with the deviation increasing with stellar magnetic activity. Our findings indicate that the stellar XUV spectrum can be reasonably estimated through a numerical model, given that the essential input parameters (surface magnetic flux and elemental abundance) are known.
under review in Astronomy & Astrophysics
References in corpus (43)
- The NumPy array: a structure for efficient numerical computation
- The surprising magnetic topology of tauSco: fossil remnant or dynamo output?
- Stellar magnetism: empirical trends with age and rotation
- CHIANTI -- an atomic database for emission lines -- Paper XVI: Version 10, further extensions
- The habitability of Proxima Centauri b. I. Irradiation, rotation and volatile inventory from formation to the present
- Extension of the MURaM radiative MHD code for coronal simulations
- Magnetic Landscape of Sun's Polar Region
- Fine strand-like structure in the solar corona from MHD transverse oscillations
- Kink oscillations of coronal loops
- XUV-driven mass loss from extrasolar giant planets orbiting active stars
- Coronal Heating, Weak MHD Turbulence and Scaling Laws
- A basal contribution from p-modes to the Alfvénic wave flux in the Sun's corona
- Estimating magnetic filling factors from Zeeman-Doppler magnetograms
- Dynamics of the solar magnetic bright points derived from their horizontal motions
- The dispersal of protoplanetary discs. II: Photoevaporation models with observationally derived irradiating spectra
- The Mega-MUSCLES Spectral Energy Distribution Of TRAPPIST-1
- Super-strong Magnetic Field in Sunspots
- The Heating of Solar Coronal Loops by Alfven Wave Turbulence
- Photoevaporative Dispersal of Protoplanetary Disks around Evolving Intermediate-mass Stars
- A Fast and Accurate Method to Capture the Solar Corona/Transition Region Enthalpy Exchange
- A solar coronal loop in a box: Energy generation and heating
- Formation of the helium EUV resonance lines
- The Evolution of the EM Distribution in the Core of an Active Region
- Less effective hydrodynamic escape of H-HO atmospheres on terrestrial planets orbiting pre-main sequence M dwarfs
- Magnetic Tornado Properties: A Substantial Contribution to the Solar Coronal Heating via Efficient Energy Transfer
- The Role of High-frequency Transverse Oscillations in Coronal Heating
- The nature of Elsässer variables in compressible MHD
- Fifteen years in the high-energy life of the solar-type star HD 81809. XMM-Newton observations of a stellar activity cycle
- Reconstructing the XUV Spectra of Active Sun-like Stars Using Solar Scaling Relations with Magnetic Flux
- Investigation of coronal properties of X-ray bright G-dwarf stars based on the solar surface magnetic field -- corona relation
- Observation of Alfvén Wave Reflection in the Solar Chromosphere: Ponderomotive Force and First Ionization Potential Effect
- Observing and modelling the young solar analogue EK Draconis: starspot distribution, elemental abundances, and evolutionary status
- Characterizing the Motion of Solar Magnetic Bright Points at High Resolution
- The magnetic properties of photospheric magnetic bright points with high resolution spectropolarimetry
- Coronal Heating and Solar Wind Generation by Flux Cancellation Reconnection
- Fleeting Small-scale Surface Magnetic Fields Build the Quiet-Sun Corona
- A new broadening technique of numerically unresolved solar transition region and its effect on the spectroscopic synthesis using coronal approximation
- Average radial structures of gas convection in the solar granulation
- Energy Input Flux in the Global Quiet-Sun Corona
- Characteristics and Energy Flux Distributions of Decayless Transverse Oscillations Depending on Coronal Regions
- Coronal Properties of Low-mass Population III Stars and the Radiative Feedback in the Early Universe
- The Effect of the Chromospheric Temperature on Coronal Heating
- Slow Magnetoacoustic Oscillations in Stellar Coronal Loops