Expansion of magnetic flux concentrations: a comparison of Hinode SOT d ata and models
arXiv:1005.3405 · doi:10.1051/0004-6361/200913887
Abstract
Context: The expansion of network magnetic fields with height is a fundamental property of flux tube models. A rapid expansion is required to form a magnetic canopy. Aims: We characterize the observed expansion properties of magnetic network elements and compare them with the thin flux tube and sheet approximations, as well as with magnetoconvection simulations. Methods: We used data from the Hinode SOT NFI NaD1 channel and spectropolarimeter to study the appearance of magnetic flux concentrations seen in circular polarization as a function of position on the solar disk. We compared the observations with synthetic observables from models based on the thin flux tube approximation and magnetoconvection simulations with two different upper boundary conditions for the magnetic field (potential and vertical). Results: The observed circular polarization signal of magnetic flux concentrations changes from unipolar at disk center to bipolar near the limb, which implies an expanding magnetic field. The observed expansion agrees with expansion properties derived from the thin flux sheet and tube approximations. Magnetoconvection simulations with a potential field as the upper boundary condition for the magnetic field also produce bipolar features near the limb while a simulation with a vertical field boundary condition does not. Conclusions: The near-limb apparent bipolar magnetic features seen in high-resolution Hinode observations can be interpreted using a simple flux sheet or tube model. This lends further support to the idea that magnetic features with vastly varying sizes have similar relative expansion rates. The numerical simulations presented here are less useful in interpreting the expansion since the diagnostics we are interested in are strongly influenced by the choice of the upper boundary condition for the magnetic field in the purely photospheric simulations.
accepted for publication in A&A
References in corpus (9)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- Solar Atmospheric Oscillations and the Chromospheric Magnetic Topology
- Strong horizontal photospheric magnetic field in a surface dynamo simulation
- Coupling from the photosphere to the chromosphere and the corona
- Chromospheric magnetic field and density structure measurements using hard X-rays in a flaring coronal loop
- Similarities and Differences between Coronal Holes and the Quiet Sun: Are Loop Statistics the Key?
- The quiet solar atmosphere observed and simulated in NaD1
- On the propagation of p-modes into the solar chromosphere
- Comparison of the thin flux tube approximation with 3D MHD simulations
Cited by in corpus (9)
- Opposite polarity field with convective downflow and its relation to magnetic spines in a sunspot penumbra
- Properties of solar plage from a spatially coupled inversion of Hinode SP data
- Analysis of Quiet-Sun Internetwork Magnetic Fields Based on Linear Polarization Signals
- Solar magnetoconvection and small-scale dynamo: Recent developments in observation and simulation
- Evolution of active and polar photospheric magnetic fields during the rise of Cycle 24 compared to previous cycles
- Formation of the penumbra and start of the Evershed flow
- Solar polarimetry through the K I lines at 770 nm
- Transport of magnetic flux from the canopy to the internetwork
- Solar limb faculae: intensity contrast from two vantage points