Solar Irradiance Variability is Caused by the Magnetic Activity on the Solar Surface
arXiv:1709.00920 · doi:10.1103/PhysRevLett.119.091102
Abstract
The variation in the radiative output of the Sun, described in terms of solar irradiance, is important to climatology. A common assumption is that solar irradiance variability is driven by its surface magnetism. Verifying this assumption has, however, been hampered by the fact that models of solar irradiance variability based on solar surface magnetism have to be calibrated to observed variability. Making use of realistic three-dimensional magnetohydrodynamic simulations of the solar atmosphere and state-of-the-art solar magnetograms from the Solar Dynamics Observatory, we present a model of total solar irradiance (TSI) that does not require any such calibration. In doing so, the modeled irradiance variability is entirely independent of the observational record. (The absolute level is calibrated to the TSI record from the Total Irradiance Monitor.) The model replicates 95% of the observed variability between April 2010 and July 2016, leaving little scope for alternative drivers of solar irradiance variability at least over the time scales examined (days to years).
Supplementary Materials; https://journals.aps.org/prl/supplemental/10.1103/PhysRevLett.119.091102/supplementary_material_170801.pdf
References in corpus (3)
Cited by in corpus (23)
- Analysis of full disc Ca II K spectroheliograms. II. Towards an accurate assessment of long-term variations in plage areas
- Full-disc Ca II K observations -- a window to past solar magnetism
- The Dimmest State of the Sun
- Data Fusion of Total Solar Irradiance Composite Time Series Using 41 Years of Satellite Measurements
- Reconstructing solar irradiance from historical Ca II K observations. I. Method and its validation
- Can 1D radiative equilibrium models of faculae be used for calculating contamination of transmission spectra?
- Spectral variability of photospheric radiation due to faculae II: Facular contrasts for cool main-sequence stars
- Modelling solar irradiance from ground-based photometric observations
- On the contribution of quiet Sun magnetism to solar irradiance variations: Constraints on quiet Sun variability and grand minimum scenarios
- Effects of continuum fudging on non-LTE synthesis of stellar spectra. I. Effects on estimates of UV continua and Solar Spectral Irradiance variability
- Testing MURaM and MPS-ATLAS against the quiet solar spectrum
- How faculae and network relate to sunspots, and the implications for solar and stellar brightness variations
- Understanding Sun-as-a-star variability of solar Balmer lines
- Irradiance Variations of the Sun and Sun-Like Stars -- Overview of Topical Collection
- Testing the solar activity paradigm in the context of exoplanet transits
- Intensity contrast of solar network and faculae -- II. Implications for solar irradiance modelling
- The relationship between bipolar magnetic regions and their sunspots
- Revisiting the SATIRE-S irradiance reconstruction: Heritage of Mt Wilson magnetograms and Ca II K observations
- Solar Atmosphere Radiative Transfer Model Comparison based on 3D MHD simulations
- Reconstruction of annual solar irradiance over the last three millennia
- Solar Irradiance Reconstruction over the Telescopic Era Using a Revised Photospheric Magnetic Field Model
- A High-resolution, Inversion-Based Synoptic Study of Solar Granulation
- Reconstruction of total solar irradiance variability as simultaneously apparent from Solar Orbiter and Solar Dynamics Observatory