G-band Spectral Synthesis in Solar Magnetic Concentrations
arXiv:astro-ph/0103006 · doi:10.1086/321521
Abstract
Narrow band imaging in the G-band is commonly used to trace the small magnetic field concentrations of the Sun, although the mechanism that makes them bright has remained unclear. We carry out LTE syntheses of the G-band in an assorted set of semi-empirical model magnetic concentrations. The syntheses include all CH lines as well as the main atomic lines within the band-pass. The model atmospheres produce bright G-band spectra having many properties in common with the observed G-band bright points. In particular, the contrast referred to the quiet Sun is about twice the contrast in continuum wavelengths. The agreement with observations does not depend on the specificities of the model atmosphere, rather it holds from single fluxtubes to MIcro-Structured Magnetic Atmospheres. However, the agreement requires that the real G-band bright points are not spatially resolved, even in the best observations. Since the predicted G-band intensities exceed by far the observed values, we foresee a notable increase of contrast of the G-band images upon improvement of the angular resolution. According to the LTE modeling, the G-band spectrum emerges from the deep photosphere that produces the continuum. Our syntheses also predict solar magnetic concentrations showing up in continuum images but not in the G-band . Finally, we have examined the importance of the CH photo-dissociation in setting the amount of G-band absorption. It turns out to play a minor role.
To appear in ApJ, 554 n2 Jun 20, 33 pages and 9 figures
Cited by in corpus (29)
- Line formation in solar granulation: IV. [O I], OI and OH lines and the photospheric O abundance
- The solar magnetic field
- Observational manifestations of solar magneto-convection -- center-to-limb variation
- Small-scale solar magnetic fields
- Bright points in the inter-network quiet Sun
- Magnetic properties of G-band bright points in a sunspot moat
- The distribution of Quiet Sun magnetic field strengths from 0 to 1800 G
- Structure and Dynamics of Isolated Internetwork Ca II H Bright Points Observed by Sunrise
- Relationships between magnetic foot points and G-band bright structures
- Magnetic bright points in the quiet Sun
- The Area Distribution of Solar Magnetic Bright Points
- Solar magnetoconvection and small-scale dynamo: Recent developments in observation and simulation
- Horizontal flow fields observed in Hinode G-band images. I. Methods
- The role of the Fraunhofer lines in solar brightness variability
- Line formation in solar granulation: V. Missing UV-opacity and the photospheric Be abundance
- Spectral variability of photospheric radiation due to faculae I: The Sun and Sun-like stars
- Velocities measured in small scale solar magnetic elements
- Non-magnetic photospheric bright points in 3D simulations of the solar atmosphere
- Response of Granulation to Small Scale Bright Features in the Quiet Sun
- Search for photospheric footpoints of quiet Sun transition region loops
- Discriminant analysis of solar bright points and faculae I. Classification method and center-to-limb distribution
- The dark side of solar photospheric G-band bright points
- Center-to-limb variation of the area covered by magnetic bright points in the quiet Sun
- The Zeeman effect in the G band
- Magnetic Coupling in the Quiet Solar Atmosphere
- Solar Photospheric Spectrum Microvariability I. Theoretical searches for proxies of radial-velocity jittering
- Observation of the Molecular Zeeman Effect in the G band
- Sunspot Bright Points
- Spectroscopic Study of the Circularly Polarised Radio Source TYC 2834-1385-1: An Active Binary