Publication | Open Access
Measuring starspot temperature from line-depth ratios
32
Citations
23
References
2005
Year
EngineeringThermal SensingAtmospheric ModelAstronomical Coordinate SystemRadiative TransferAtmospheric ScienceIm PegAstronomical Image AnalysisSpot TemperaturesThermal Infrared Remote SensingPhotometryRadiation MeasurementRadiometryStarspot TemperatureSpace WeatherRadiative Transfer ModellingClimatologyHk LacAstrophysicsAtmospheric RadiationStellar StructurePhotometry (Optics)
We present and apply to VY Ari, IM Peg and HK Lac a new method to determine spot temperatures (Tsp) and areas (Arel) from the analysis of simultaneous light curves and temperature modulations deduced from line-depth ratios. A spot model, developed by us, has been applied to light and temperature curves. Grids of solutions with comparable χ-square have been found for a wide range of spot temperatures. The behavior of the solution grids for temperature and light curves in the Tsp–Arel plane is very different and a rather small and unique intersection area can be found. In our spot-model we used spectral energy distributions (SEDs) based on the Planck law and on model atmospheres to evaluate the flux ratio between spots and unspotted photosphere and we found higher spot temperatures with SEDs based on model atmospheres than on the Planck law.
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