The dark side of solar photospheric G-band bright points
arXiv:1612.07887 · doi:10.1051/0004-6361/201629773
Abstract
Bright small-scale magnetic elements found mainly in intergranular lanes at the solar surface are named bright points (BPs). They show high contrasts in Fraunhofer G-band observations and are described by nearly vertical slender flux tubes or sheets. A recent comparison between BP observations in the ultraviolet (UV) and visible spectral range recorded with the balloon-borne observatory SUNRISE and state-of-the-art magnetohydrodynamical (MHD) simulations revealed a kiloGauss magnetic field for 98% of the synthetic BPs. Here we address the opposite question, namely which fraction of pixels hosting kiloGauss fields coincides with an enhanced G-band brightness. We carried out 3D radiation MHD simulations for three magnetic activity levels (corresponding to the quiet Sun, weak and strong plage) and performed a full spectral line synthesis in the G-band. Only 7% of the kiloGauss pixels in our quiet-Sun simulation coincide with a brightness lower than the mean quiet-Sun intensity, while 23% of the pixels in the weak-plage simulation and even 49% in the strong-plage simulation are associated with a local darkening. Dark strong-field regions are preferentially found in the cores of larger flux patches that are rare in the quiet Sun, but more common in plage regions, often in the vertices of granulation cells. The significant brightness shortfall in the core of larger flux patches coincide with a slight magnetic field weakening. KiloGauss elements in the quiet Sun are on average brighter than similar features in plage regions. Almost all strong-field pixels display a more or less vertical magnetic field orientation. Hence in the quiet Sun, G-band BPs correspond almost one-to-one with kiloGauss elements. In weak plage the correspondence is still very good, but not perfect.
Accepted for publication in Astronomy & Astrophysics
References in corpus (10)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- Quiet Sun internetwork magnetic fields from the inversion of Hinode measurements
- Magnetic properties of G-band bright points in a sunspot moat
- Evidence for Quasi-isotropic Magnetic Fields from Hinode Quiet Sun Observations
- Structure and Dynamics of Isolated Internetwork Ca II H Bright Points Observed by Sunrise
- Relationships between magnetic foot points and G-band bright structures
- Properties of solar plage from a spatially coupled inversion of Hinode SP data
- Near-IR internetwork spectro-polarimetry at different heliocentric angles
- The brightness of magnetic field concentrations in the quiet Sun
- Dynamic properties of bright points in an active region
Cited by in corpus (8)
- Photometric Properties of Network and Faculae Derived from HMI Data Compensated for Scattered-Light
- On the Magnetic Nature of an Exploding Granule as Revealed by Sunrise/IMaX
- Solar Photospheric Spectrum Microvariability I. Theoretical searches for proxies of radial-velocity jittering
- The polarization signature of photospheric magnetic fields in 3D MHD simulations and observations at disk center
- Small-scale Dynamo in Cool Stars III. Changes in the photospheres of F3V to M0V stars
- Open and closed magnetic configurations of twisted flux tubes
- Model of a fluxtube with a twisted magnetic field in the stratified solar atmosphere
- The effect of local magnetic fields in quiet regions of stellar atmospheres simulated with MANCHA