Analysis of Quiet-Sun Internetwork Magnetic Fields Based on Linear Polarization Signals
arXiv:1203.1440 · doi:10.1088/0004-637X/751/1/2
Abstract
We present results from the analysis of Fe I 630 nm measurements of the quiet Sun taken with the spectropolarimeter of the Hinode satellite. Two data sets with noise levels of 1.2{\times}10-3 and 3{\times}10-4 are employed. We determine the distribution of field strengths and inclinations by inverting the two observations with a Milne-Eddington model atmosphere. The inversions show a predominance of weak, highly inclined fields. By means of several tests we conclude that these properties cannot be attributed to photon noise effects. To obtain the most accurate results, we focus on the 27.4% of the pixels in the second data set that have linear polarization amplitudes larger than 4.5 times the noise level. The vector magnetic field derived for these pixels is very precise because both circular and linear polarization signals are used simultaneously. The inferred field strength, inclination, and filling factor distributions agree with previous results, supporting the idea that internetwork fields are weak and very inclined, at least in about one quarter of the area occupied by the internetwork. These properties differ from those of network fields. The average magnetic flux density and the mean field strength derived from the 27.4% of the field of view with clear linear polarization signals are 16.3 Mx cm-2 and 220 G, respectively. The ratio between the average horizontal and vertical components of the field is approximately 3.1. The internetwork fields do not follow an isotropic distribution of orientations.
To appear in APJ, Vol 749, 2012
References in corpus (13)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- A Substantial Amount of Hidden Magnetic Energy in the Quiet Sun
- Quiet Sun internetwork magnetic fields from the inversion of Hinode measurements
- Small-scale solar magnetic fields
- The intensity contrast of solar granulation: comparing Hinode SP results with MHD simulations
- Strong horizontal photospheric magnetic field in a surface dynamo simulation
- The horizontal internetwork magnetic field: numerical simulations in comparison to observations with Hinode
- Evidence for Quasi-isotropic Magnetic Fields from Hinode Quiet Sun Observations
- The usefulness of analytic response functions
- Relation between photospheric magnetic field and chromospheric emission
- Quiet Sun magnetic fields from simultaneous inversions of visible and infrared spectropolarimetric observations
- Internetwork magnetic field distribution from simultaneous 1.56 micron and 630 nm observations
- Quiet Sun magnetic fields from space-borne observations: simulating Hinode's case
Cited by in corpus (32)
- Numerical simulations of quiet Sun magnetism: On the contribution from a small-scale dynamo
- Evidence for the photospheric excitation of incompressible chromospheric waves
- A Cancellation Nanoflare Model for Solar Chromospheric and Coronal Heating
- The European Solar Telescope
- Hidden magnetic fields of young suns
- Internetwork magnetic field as revealed by 2D inversions
- Diffusion of solar magnetic elements up to supergranular spatial and temporal scales
- Diffusion of magnetic elements in a supergranular cell
- Estimation of the magnetic flux emergence rate in the quiet Sun from Sunrise data
- Small-scale dynamos: From idealized models to solar and stellar applications
- Internal Gravity Waves in the Magnetized Solar Atmosphere. I. Magnetic Field Effects
- Pervasive Linear Polarization Signals in the Quiet Sun
- Probing deep photospheric layers of the quiet Sun with high magnetic sensitivity
- Chromospheric heating due to cancellation of quiet Sun internetwork fields
- Solar surface and atmospheric dynamics: The Photosphere
- Pair separation of magnetic elements in the quiet Sun
- Inference of magnetic fields in the very quiet Sun
- Numerical simulations and observations of Mg II in the solar chromosphere
- Prospects of solar magnetometry - from ground and in space
- Inferring the magnetic field vector in the quiet Sun. III. Disk variation of the Stokes profiles and isotropism of the magnetic field
- Dynamics of internetwork chromospheric fibrils: Basic properties and MHD kink waves
- Chromospheric observations and magnetic configuration of a supergranular structure
- Super-diffusion versus competitive advection: a simulation
- Magnetic pattern at supergranulation scale: the Void Size Distribution
- Methodology for estimating the magnetic Prandtl number and application to solar surface small-scale dynamo simulations
- Temporal evolution of small-scale internetwork magnetic fields in the solar photosphere
- Linear Polarization Features in the Quiet-Sun Photosphere: Structure and Dynamics
- A Refined Model of Convectively-Driven Flicker in Kepler Light Curves
- Exploring magnetic loops and serpentine fields in the quiet Sun with the GRIS-IFU
- Spectropolarimetric diagnostics of unresolved magnetic fields in the quiet solar photosphere
- A multi-viewpoint comparison of the velocity field of coronal propagating disturbances
- The effect of local magnetic fields in quiet regions of stellar atmospheres simulated with MANCHA