Structure of sunspot penumbral filaments: a remarkable uniformity of properties
arXiv:1307.3668 · doi:10.1051/0004-6361/201321391
Abstract
The sunspot penumbra comprises numerous thin, radially elongated filaments that are central for heat transport within the penumbra, but whose structure is still not clear. To investigate the fine-scale structure of these filaments, we perform a depth-dependent inversion of spectropolarimetric data of a sunspot very close to solar disk center obtained by Hinode (SOT/SP). We have used a recently developed spatially coupled 2D inversion scheme which allows us to analyze the fine structure of individual penumbral filaments up to the diffraction limit of the telescope. Filaments of different sizes in all parts of penumbra display very similar magnetic field strengths, inclinations and velocity patterns. The similarities allowed us to average all these filaments and to extract the physical properties common to all of them. This average filament shows upflows associated with an upward pointing field at its inner, umbral end and along its axis, downflows along the lateral edge and strong downflows in the outer end associated with a nearly vertical, strong and downward pointing field. The upflowing plasma is significantly hotter than the downflowing plasma. The hot, tear-shaped head of the averaged filament can be associated with a penumbral grain. The central part of the filament shows nearly horizontal fields with strengths of ~1kG. The field above the filament converges, whereas a diverging trend is seen in the deepest layers near the head of the filament. We put forward a unified observational picture of a sunspot penumbral filament. It is consistent with such a filament being a magneto-convective cell, in line with recent MHD simulations. The uniformity of its properties over the penumbra sets constraints on penumbral models and simulations. The complex and inhomogeneous structure of the filament provides a natural explanation for a number of long-running controversies in the literature.
19 pages; 12 figures; accepted for publication in A&A
References in corpus (15)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- Magneto-convection in a sunspot umbra
- Penumbral structure and outflows in simulated sunspots
- Peripheral downflows in sunspot penumbrae
- Magnetostatic penumbra models with field-free gaps
- Convection and the origin of Evershed flows in sunspot penumbrae
- Evidence of convective rolls in a sunspot penumbra
- Detection of sea-serpent field lines in sunspot penumbrae
- Evidence of magnetic field wrapping around penumbral filaments
- Vector spectropolarimetry of dark-cored penumbral filaments with Hinode
- Heat transfer in sunspot penumbrae. Origin of dark-cored penumbral filaments
- Vertical flows and mass flux balance of sunspot umbral dots
- Sunspots: from small-scale inhomogeneities towards a global theory
- The structure of sunspot penumbrae IV. MHS equilibrium for penumbral flux tubes and the origin of dark core penumbral filaments and penumbral grains
- Models and Observations of Sunspot Penumbrae
Cited by in corpus (70)
- The Magnetic Field in the Solar Atmosphere
- Solar science with the Atacama Large Millimeter/submillimeter Array - A new view of our Sun
- Critical Science Plan for the Daniel K. Inouye Solar Telescope (DKIST)
- Peripheral downflows in sunspot penumbrae
- The European Solar Telescope
- Vigorous convection in a sunspot granular light bridge
- Properties of solar plage from a spatially coupled inversion of Hinode SP data
- Stokes Inversion based on Convolutional Neural Networks
- Measurements of Photospheric and Chromospheric Magnetic Fields
- A method for global inversion of multi-resolution solar data
- Three-dimensional structure of a sunspot light bridge
- Depth-dependent global properties of a sunspot observed by Hinode using the Solar Optical Telescope/Spectropolarimeter
- Deep probing of the photospheric sunspot penumbra: no evidence for magnetic field-free gaps
- The magnetic nature of umbra-penumbra boundary in sunspots
- Internetwork magnetic field as revealed by 2D inversions
- Formation of the penumbra and start of the Evershed flow
- Transition-Region/Coronal Signatures and Magnetic Setting of Sunspot Penumbral Jets: {\it Hinode} (SOT/FG), Hi-C and {\it SDO}/AIA Observations
- Observationally based models of penumbral microjets
- The influence of NLTE effects in Fe I lines on an inverted atmosphere I. 6301 A and 6302 A lines formed in 1D NLTE
- Hi-C Observations of Sunspot Penumbral Bright Dots
- Normal and counter Evershed flows in the photospheric penumbra of a sunspot. SPINOR 2D inversions of Hinode-SOT/ SP observations
- A new MHD-assisted Stokes inversion technique
- Magnetic fields of opposite polarity in sunspot penumbrae
- Lateral downflows in sunspot penumbral filaments and their temporal evolution
- Upper Chromospheric Magnetic Field of a Sunspot Penumbra: Observations of Fine Structure
- Dynamics of subarcsecond bright dots in the transition region above sunspot and their relation to penumbral micro-jets
- Vertical magnetic field gradient in the photospheric layers of sunspots
- Evidence of Twisting and Mixed-polarity Solar Photospheric Magnetic Field in Large Penumbral Jets: IRIS and Hinode Observations
- Evershed and counter-Evershed flows in sunspot MHD simulations
- Three-dimensional magnetic structure of a sunspot: comparison of the photosphere and upper chromosphere
- The small-scale structure of photospheric convection retrieved by a deconvolution technique applied to Hinode/SP data
- Height dependence of the penumbral fine-scale structure in the inner solar atmosphere
- Influence of NLTE effects in Fe I lines on inverted atmosphere II. 6301 A and 6302 A lines formed in 3DNLTE
- Dark structures in sunspot light bridges
- Superstrong photospheric magnetic fields in sunspot penumbrae
- Orphan penumbrae: Submerging horizontal fields
- Restoring process of sunspot penumbra
- Magnetic properties on the boundary of an evolving pore
- Sunspot penumbral filaments intruding into a light bridge and the resultant reconnection jets
- Formation of a solar Ha filament from orphan penumbrae
- No universal connection between the vertical magnetic field and the umbra-penumbra boundary in sunspots
- Detection of Opposite Magnetic Polarity in a Light Bridge: Its Emergence and Cancellation in association with LB Fan-shaped Jets
- Characterization of the umbra-penumbra boundary by the vertical component of the magnetic field -- Analysis of ground-based data from the GREGOR Infrared Spectrograph
- The role of the chromospheric magnetic canopy in the formation of a sunspot penumbra
- Penumbral thermal structure below the visible surface
- Connecting the Wilson depression to the magnetic field of sunspots
- Horizontal motions in sunspot penubrae
- The dark side of penumbral microjets: Observations in Hα
- Onset of penumbra formation
- Expulsion of counter Evershed flows from sunspot penumbrae
- : A spectropolarimetric inversion code for the coupled inference of atomic line parameters
- The MODEST catalog of depth-dependent spatially coupled inversions of sunspots observed by Hinode/SOT-SP
- Average solar active region: I. Intensities, velocities, and the photospheric magnetic field
- Chromospheric plasma ejection above a pore
- Spectral resolution effects on the information content in solar spectra
- Notes about collapse in magnetohydrodynamics
- Ti I lines at 2.2 m as probes of the cool parts of sunspots
- Opposite polarity magnetic field and convective downflows in a simulated sunspot penumbra
- Magnetic properties of orphan penumbrae
- The magnetic origin of the outer boundaries of sunspots
- Bright Dots and Coronal Plume Formation in Sunspot Penumbra
- Response to "Stray-light correction in 2D spectroscopy" by R. Schlichenmaier and M. Franz
- Magnetic filaments: formation, stability, and feedback
- Morphological variations of solar granules in the presence of magnetic fields
- Similarities of magnetoconvection in the umbra and in the penumbra of sunspots
- Image patch analysis of sunspots and active regions. II. Clustering via matrix factorization
- SolO/EUI Observations of Ubiquitous Fine-scale Bright Dots in an Emerging Flux Region: Comparison with a Bifrost MHD Simulation
- Apparent motion of penumbral grains in a sunspot simulation
- Sunspot simulations with MURaM -- I. Parameter study using potential field initial conditions
- Decay of a photospheric transient filament at the boundary of a pore and the chromospheric response