Line shape effects on intensity measurements of solar features: Brightness correction to SoHO MDI continuum images
arXiv:1012.2561 · doi:10.1088/0004-637X/728/2/92
Abstract
Continuum intensity observations obtained with the Michelson Doppler Imager (MDI) on-board the SoHO mission provide long time series of filtergrams that are ideal for studying the evolution of large-scale phenomena in the solar atmosphere and their dependence on solar activity. These filtergrams, however, are not taken in a pure continuum spectral band, but are constructed from a proxy, namely a combination of filtergrams sampling the Ni I 676.8 nm line. We studied the sensitivity of this continuum proxy to the shape of the nickel line and to the degradation in the instrumental transmission profiles. We compared continuum intensity measurements in the nearby of nickel line with MDI proxy values in three sets of high resolution spectro-polarimetric data obtained with the Interferometric Bidimensional Spectrometer (IBIS), and in synthetic data, obtained from multi-dimensional simulations of magneto-convection and one-dimensional atmosphere models. We found that MDI continuum measurements require brightness corrections which depend on magnetic field strength, temperature and, to a smaller extent, plasma velocity. The correction ranges from 2% to 25% in sunspots, and is, on average, less than 2% for other features. The brightness correction also varies with position on the disk, with larger variations obtained for sunspots, and smaller variations obtained for quiet sun, faculae and micropores. Correction factors derived from observations agree with those deduced from the numerical simulations when observational effects are taken into account. Finally, we found that the investigated potential uncertainties in the transmission characteristics of MDI filters only slightly affect the brightness correction to proxy measurements.
submitted to the Astrophysical Journal accepted on 12/10/2010
References in corpus (10)
- The solar chromosphere at high resolution with IBIS. I. New insights from the Ca II 854.2 nm line
- Properties of sunspots in cycle 23: I. Dependence of brightness on sunspot size and cycle phase
- Interpretation of Solar Magnetic Field Strength Observations
- Radiative transfer effects on Doppler measurements as sources of surface effects in sunspot seismology
- Imaging Spectropolarimetry with IBIS: Evolution of Bright Points in the Quiet Sun
- Temporal evolution of the Evershed flow in sunspots. I. Observational characterization of Evershed clouds
- High-order aberration compensation with Multi-frame Blind Deconvolution and Phase Diversity image restoration techniques
- The intensity contrast of solar photospheric faculae and network elements II. Evolution over the rising phase of solar cycle 23
- Fabry-Perot versus slit spectropolarimetry of pores and active network. Analysis of IBIS and Hinode data
- Stray-light restoration of full-disk CaII K solar observations: a case study
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- Understanding the Fe I Line Measurements Returned by the Helioseismic and Magnetic Imager