The problem of the height dependence of magnetic fields in sunspots
arXiv:1808.06426 · doi:10.1007/s11207-018-1338-x
Abstract
To understand the physics of sunspots, it is important to know the properties of their magnetic field, and especially its height stratification plays a substantial role. There are mainly two methods to assess this stratification, but they yield different magnetic gradients in the photospheric layers. Determinations based on the different origin of several spectral lines and the slope of their profiles result in gradients of -2 to -3G/km, or even steeper. This is similar for the total magnetic field strength and for the vertical component of the magnetic field. The other option is to determine the horizontal partial derivatives of the magnetic field, and with the condition divB=0, also the vertical derivative is known. With this method, gradients of -0.5 G/km and shallower are obtained. Obviously, these results do not agree. If chromospheric spectral lines are included, only shallow gradients around -0.5G/km are encountered. Shallow gradients are also found from gyro-resonance measurements in the radio wave range 300 - 2000GHz. Some indirect methods are also considered, but they cannot clarify the total picture. An analysis of a numerical simulation of a sunspot indicates a shallow gradient over a wide height range, but with slightly steeper gradients in deep layers. Several ideas to explain the discrepancy are also discussed. With no doubts cast on Maxwell's equations, the first one is to look at the uncertainties of the formation heights of spectral lines, but a wider range of these heights would require an extension of the solar photosphere that is incompatible with observations and the theory of stellar atmospheres. The problem of the height gradient of the magnetic field in sunspots is still not solved.
Invited review for Solar Physics
References in corpus (15)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- Ideal kink instability of a magnetic loop equilibrium
- Three-dimensional structure of a sunspot light bridge
- Evidence of magnetic field wrapping around penumbral filaments
- The structure of sunspot penumbrae IV. MHS equilibrium for penumbral flux tubes and the origin of dark core penumbral filaments and penumbral grains
- Magnetic fields of opposite polarity in sunspot penumbrae
- Upper Chromospheric Magnetic Field of a Sunspot Penumbra: Observations of Fine Structure
- Vertical magnetic field gradient in the photospheric layers of sunspots
- High-resolution imaging and near-infrared spectroscopy of penumbral decay
- Three-dimensional magnetic structure of a sunspot: comparison of the photosphere and upper chromosphere
- Spectropolarimetric observations of an arch filament system with the GREGOR solar telescope
- The Deep Layers of Sunspot Umbrae
- Spectropolarimetric Observations of an Arch Filament System with GREGOR
- Properties of a Decaying Sunspot
- Solar Physics at the Einstein Tower
Cited by in corpus (9)
- The European Solar Telescope
- Height dependence of the penumbral fine-scale structure in the inner solar atmosphere
- Magnetic Properties and Flow Angle of the Inverse Evershed Flow at Its Downflow Points
- Estimating the longitudinal magnetic field in the chromosphere of quiet-Sun magnetic concentrations
- The role of the chromospheric magnetic canopy in the formation of a sunspot penumbra
- Characterization of the umbra-penumbra boundary by the vertical component of the magnetic field -- Analysis of ground-based data from the GREGOR Infrared Spectrograph
- Solar photosphere magnetization
- Magnetometry: solving the fundamental ambiguity from line pair inversion
- The dependence of the magnetism of a near-limb sunspot on height