Intensity contrast of solar network and faculae -- II. Implications for solar irradiance modelling
arXiv:2102.09530 · doi:10.1051/0004-6361/201935123
Abstract
We aim to gain insight into the effect of network and faculae on solar irradiance from their apparent intensity. Taking full-disc observations from the Solar Dynamics Observatory, we examined the intensity contrast of network and faculae in the continuum and core of the Fe I 6173 Å line and 1700 Å, including the variation with magnetic flux density, distance from disc centre, nearby magnetic fields, and time. The brightness of network and faculae is believed to be suppressed by nearby magnetic fields from its effect on convection. The difference in intensity contrast between the quiet-Sun network and active region faculae, noted by various studies, arises because active regions are more magnetically crowded and is not due to any fundamental physical differences between network and faculae. These results highlight that solar irradiance models need to include the effect of nearby magnetic fields on network and faculae brightness. We found evidence that suggests that departures from local thermal equilibrium (LTE) might have limited effect on intensity contrast. This could explain why solar irradiance models that are based on the intensity contrast of solar surface magnetic features calculated assuming LTE reproduce the observed spectral variability even where the LTE assumption breaks down. Certain models of solar irradiance employ chromospheric indices as direct indications of the effect of network and faculae on solar irradiance. Based on past studies of the Ca II K line and on the intensity contrast measurements derived here, we show that the fluctuations in chromospheric emission from network and faculae are a reasonable estimate of the emission fluctuations in the middle photosphere, but not of those in the lower photosphere. The data set, which extends from 2010 to 2018, indicates that intensity contrast was stable to about 3% in this period.
References in corpus (9)
- The Helioseismic and Magnetic Imager (HMI) Vector Magnetic Field Pipeline: Overview and Performance
- Reconstruction of total and spectral solar irradiance from 1974 to 2013 based on KPVT, SoHO/MDI and SDO/HMI observations
- Spectral Line Selection for HMI: A Comparison of Fe I 6173 and Ni I 6768
- Solar Irradiance Variability is Caused by the Magnetic Activity on the Solar Surface
- Relationships between magnetic foot points and G-band bright structures
- Relation between photospheric magnetic field and chromospheric emission
- The brightness of magnetic field concentrations in the quiet Sun
- The intensity contrast of solar photospheric faculae and network elements II. Evolution over the rising phase of solar cycle 23
- Temporal Pointing Variations of The Solar Dynamics Observatory's HMI and AIA Instruments on Sub-Weekly Time Scales
Cited by in corpus (4)
- The Dimmest State of the Sun
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- Reconstructing solar magnetic fields from historical observations VIII. AIA 1600 Å contrast as a proxy of solar magnetic fields
- A stray light analysis for SO/PHI-HRT and an updated comparison of the inferred magnetic field with SDO/HMI