Imaging Spectropolarimetry with IBIS II: on the fine structure of G-band bright features
arXiv:1009.0721 · doi:10.1088/0004-637X/723/1/787
Abstract
We present new results from first observations of the quiet solar photosphere performed through the Interferometric BIdimensional Spectrometer (IBIS) in spectropolarimetric mode. IBIS allowed us to measure the four Stokes parameters in the FeI 630.15 nm and FeI 630.25 nm lines with high spatial and spectral resolutions for 53 minutes; the polarimetric sensitivity achieved by the instrument is 0.003 the continuum intensity level. We focus on the correlation which emerges between G-band bright feature brightness and magnetic filling factor of ~ 1000 G (kG) fields derived by inverting Stokes I and V profiles. More in detail, we present the correlation first in a pixel-by-pixel study of an approximatively 3 arcsec wide bright feature (a small network patch) and then we show that such a result can be extended to all the bright features found in the dataset at any instant of the time sequence. The higher the kG filling factor associated to a feature the higher the brightness of the feature itself. Filling factors up to about 35 % are obtained for the brightest features. Considering the values of the filling factors derived from the inversion analysis of spectropolarimetric data and the brightness variation observed in G-band data we put forward an upper limit for the smallest scale over which magnetic flux concentrations in intergranular lanes produce a G-band brightness enhancement (~ 0.1''). Moreover, the brightness saturation observed for feature sizes comparable to the resolution of the observations is compatible with large G-band bright features being clusters of sub-arcsecond bright points. This conclusion deserves to be confirmed by forthcoming spectropolarimetric observations at higher spatial resolution.
10 pages, 7 figures, 1 table - Accepted for publication on ApJ
References in corpus (17)
- Small-scale solar magnetic fields
- Hinode Observations of Magnetic Elements in Internetwork Areas
- Magnetic properties of G-band bright points in a sunspot moat
- DOT tomography of the solar atmosphere. IV. Magnetic patches in internetwork areas
- Relationships between magnetic foot points and G-band bright structures
- Magnetic bright points in the quiet Sun
- The size distribution of magnetic bright points derived from Hinode/SOT observations
- Stokes diagnostics of simulated solar magneto-convection
- Magnetic field intensification: comparison of 3D MHD simulations with Hinode/SP results
- Imaging Spectropolarimetry with IBIS: Evolution of Bright Points in the Quiet Sun
- Velocities measured in small scale solar magnetic elements
- Fabry-Perot versus slit spectropolarimetry of pores and active network. Analysis of IBIS and Hinode data
- Photometric properties of resolved and unresolved magnetic elements
- The quiet Sun's magnetic flux estimated from CaIIH bright inter-granular G-band structures
- 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
- Stray-light restoration of full-disk CaII K solar observations: a case study
Cited by in corpus (31)
- Intensity contrast of solar network and faculae
- Instrumentation for solar spectropolarimetry: state of the art and prospects
- Solar magnetoconvection and small-scale dynamo: Recent developments in observation and simulation
- The continuum intensity as a function of magnetic field I. Active region and quiet Sun magnetic elements
- Dynamics of the solar atmosphere above a pore with a light bridge
- Conditions for Photospherically Driven Alfvenic Oscillations to Heat the Solar Chromosphere by Pedersen Current Dissipation
- Diffusion of solar magnetic elements up to supergranular spatial and temporal scales
- The formation and disintegration of magnetic bright points observed by Sunrise/IMaX
- Spatial deconvolution of spectropolarimetric data: an application to quiet Sun magnetic elements
- Propagating Spectropolarimetric Disturbances in a Large Sunspot
- Photometric Properties of Network and Faculae Derived from HMI Data Compensated for Scattered-Light
- The continuum intensity as a function of magnetic field II. Local magnetic flux and convective flows
- The spectrum of kink-like oscillations of solar photospheric magnetic elements
- Chromospheric heating by acoustic waves compared to radiative cooling
- The statistical distribution of magnetic field strength in G-band bright points
- A comparison between solar plage and network properties
- Height variation of magnetic field and plasma flows in isolated bright points
- High cadence spectropolarimetry of moving magnetic features observed around a pore
- On Dynamics of G-Band Bright Points
- Response of Granulation to Small Scale Bright Features in the Quiet Sun
- On the relationship between G-band bright point dynamics and their magnetic field strengths
- Spectropolarimetric Fluctuations in a Sunspot Chromosphere
- Super-diffusion versus competitive advection: a simulation
- IBIS-A: The IBIS data Archive. High resolution observations of the solar photosphere and chromosphere with contextual data
- Center-to-limb variation of the area covered by magnetic bright points in the quiet Sun
- Effects of unresolved magnetic field on Fe I 617.3 and 630.2 nm line shapes
- The polarization signature of photospheric magnetic fields in 3D MHD simulations and observations at disk center
- JP3D compression of solar data-cubes: photospheric imaging and spectropolarimetry
- A prototype of a large tunable Fabry-Perot interferometer for solar spectroscopy
- Atmosphere above a large solar pore
- High-resolution spectropolarimetric observations of the temporal evolution of magnetic fields in photospheric bright points