Magneto-acoustic waves in sunspots: first results from a new 3D nonlinear magnetohydrodynamic code
arXiv:1006.2998 · doi:10.1088/0004-637X/719/1/357
Abstract
Waves observed in the photosphere and chromosphere of sunspots show complex dynamics and spatial patterns. The interpretation of high-resolution sunspot wave observations requires modeling of three-dimensional non-linear wave propagation and mode transformation in the sunspot upper layers in realistic spot model atmospheres. Here we present the first results of such modeling. We have developed a 3D non-linear numerical code specially designed to calculate the response of magnetic structures in equilibrium to an arbitrary perturbation. The code solves the 3D nonlinear MHD equations for perturbations; it is stabilized by hyper-diffusivity terms and is fully parallelized. The robustness of the code is demonstrated by a number of standard tests. We analyze several simulations of a sunspot perturbed by pulses of different periods at subphotospheric level, from short periods, introduced for academic purposes, to longer and realistic periods of three and five minutes. We present a detailed description of the three-dimensional mode transformation in a non-trivial sunspot-like magnetic field configuration, including the conversion between fast and slow magneto-acoustic waves and the Alfvén wave, by calculation of the wave energy fluxes. Our main findings are the following: (1) the conversion from acoustic to the Alfvén mode is only observed if the the driving pulse is located out of the sunspot axis, but this conversion is energetically inefficient; (2) as a consequence of the cut-off effects and refraction of the fast magneto-acoustic mode, the energy of the evanescent waves with periods around 5 minutes remains almost completely below the level beta=1; (3) waves with frequencies above the cut-off propagate field-aligned to the chromosphere and their power becomes dominating over that of evanescent 5-minute oscillations, in agreement with observations.
References in corpus (9)
- Three Dimensional MHD Wave Propagation and Conversion to Alfven Waves near the Solar Surface. I. Direct Numerical Solution
- The Nature of Running Penumbral Waves Revealed
- Non-linear numerical simulations of magneto-acoustic wave propagation in small-scale flux tubes
- Helioseismology of Sunspots: Confronting Observations with Three-Dimensional MHD Simulations of Wave Propagation
- Seismic Halos Around Active Regions: An MHD Theory
- MHS sunspot model from deep sub-photospheric to chromospheric layers
- Effect of suppressed excitation on the amplitude distribution of 5-min oscillations in sunspots
- SLiM: a code for the simulation of wave propagation through an inhomogeneous, magnetised solar atmosphere
- Numerical Models of Travel-Time Inhomogeneities in Sunspots
Cited by in corpus (77)
- Heating of the magnetized solar chromosphere by partial ionization effects
- Numerical simulations of conversion to Alfven waves in sunspots
- Physical Properties of a Sunspot Chromosphere with Umbral Flashes
- Multi-layer study of wave propagation in sunspots
- Three-dimensional simulations of solar magneto-convection including effects of partial ionization
- DeepVel: deep learning for the estimation of horizontal velocities at the solar surface
- Rayleigh-Taylor instability in prominences from numerical simulations including partial ionization effects
- Heating of the partially ionized solar chromosphere by waves in magnetic structures
- Two-fluid simulations of waves in the solar chromosphere I: numerical code verification
- MHD wave transmission in the Sun's atmosphere
- Generation of Magnetohydrodynamic Waves in Low Solar Atmospheric Flux Tubes by Photospheric Motions
- On the robustness of the pendulum model for large-amplitude longitudinal oscillations in prominences
- Numerical simulations of quiet Sun magnetic fields seeded by Biermann battery
- MHDSTS: a new explicit numerical scheme for simulations of partially ionised solar plasma
- Three-dimensional numerical simulations of fast-to-Alfven conversion in sunspots
- Two-fluid simulations of waves in the solar chromosphere II. Propagation and damping of fast magneto-acoustic waves and shocks
- Synthetic observations of wave propagation in a sunspot umbra
- Magneto-acoustic wave energy from numerical simulations of an observed sunspot umbra
- MHD wave propagation from the sub-photosphere to the corona in an arcade-shaped magnetic field with a null point
- Magnetic field variations associated with umbral flashes and penumbral waves
- Three-minute wave enhancement in the solar photosphere
- Two-fluid simulations of Rayleigh-Taylor instability in a magnetized solar prominence thread. I. Effects of prominence magnetization and mass loading
- Wave modes excited by photospheric p-modes and mode conversion in a multi-loop system
- Properties of the 15 February 2011 Flare Seismic Sources
- Magnetoacoustic Waves in a Stratified Atmosphere with a Magnetic Null Point
- Magnetohydrodynamic waves driven by p-modes
- Propagating Spectropolarimetric Disturbances in a Large Sunspot
- Numerical simulations of conversion to Alfven waves in solar active regions
- Dynamics in Sunspot Umbra as Seen in New Solar Telescope and Interface Region Imaging Spectrograph Data
- Origin of the chromospheric three-minute oscillations in sunspot umbrae
- Inversions of synthetic umbral flashes: effects of the scanning time on the inferred atmospheres
- Fast-to-Alfvén mode conversion mediated by Hall current. II Application to the solar atmosphere
- Numerical simulations of large-amplitude oscillations in flux-rope solar prominences
- Numerical determination of the cutoff frequency in solar models
- Three-dimensional MHD wave propagation near a coronal null point: a new wave mode decomposition approach
- Large-amplitude prominence oscillations following the impact by a coronal jet
- Joint action of Hall and ambipolar effects in 3D magneto-convection simulations of the quiet Sun. I. Dissipation and generation of waves
- Two-dimensional simulations of coronal rain dynamics. I. Model with vertical magnetic field and an unbounded atmosphere
- Numerical simulations of multiple scattering of the mode by flux tubes
- Accelerated particle beams in a 3D simulation of the quiet Sun
- Scattering of the f-mode by small magnetic flux elements from observations and numerical simulations
- A finite-volume scheme for modeling compressible magnetohydrodynamic flows at low Mach numbers in stellar interiors
- Helioseismic Holography of Simulated Sunspots: dependence of the travel time on magnetic field strength and Wilson depression
- Modeling the thermal conduction in the solar atmosphere with the code MANCHA3D
- A study of sunspot 3 minute oscillations using ALMA and GST
- Spectropolarimetric Fluctuations in a Sunspot Chromosphere
- Helioseismic holography of simulated sunspots: magnetic and thermal contributions to travel times
- Stability of two-fluid partially-ionised slow-mode shock fronts
- Mapping the hidden magnetic field of the quiet Sun
- Exploring source region of 3-min slow magnetoacoustic waves observed in coronal fan loops rooted in sunspot umbra
- High frequency waves in the corona due to null points
- Numerical simulations of prominence oscillations triggered by external perturbations
- Two-fluid implementation in MPI-AMRVAC, with applications in the solar chromosphere
- A comparative study of resistivity models for simulations of magnetic reconnection in the solar atmosphere
- Dependence of sunspot photospheric waves on the depth of the source of solar modes
- Spatial Distribution of Origin of Umbral Waves in a Sunspot Umbra
- Downflowing umbral flashes as an evidence of standing waves in sunspot umbrae
- Analysis of Helioseismic Power-Spectrum Diagram of A Sunspot
- Evaluation of the capability of local helioseismology to discern between monolithic and spaghetti sunspot models
- Influence of ambipolar and Hall effects on vorticity in 3D simulations of magneto-convection
- Simulations of the Biermann battery mechanism in two-fluid partially ionised plasmas
- Ambipolar Diffusion in the Lower Solar Atmosphere: MHD Simulations of a Sunspot
- Inversions of synthetic umbral flashes: selection of wavelength sampling
- Limitations of the Ca II 8542 Å line for the determination of magnetic field oscillations
- Opacity for realistic 3D MHD simulations of cool stellar atmospheres
- Numerical study of solar eruption, extreme-ultraviolet wave propagation, and wave-induced prominence dynamics
- A study of the capabilities for inferring atmospheric information from high-spatial-resolution simulations
- Spectropolarimetric investigation of magnetohydrodynamic wave modes in the photosphere: First results from PHI on board Solar Orbiter
- Impact of opacity effects on chromospheric oscillations inferred from NLTE inversions
- Validating Forward Modeling and Inversions of Helioseismic Holography Measurements
- Observational and numerical characterization of a recurrent arc-shaped front propagating along a coronal fan
- Recipe for inferring sub-surface solar magnetism via local mode-coupling using Slepian basis functions
- Non-equilibrium Equation of State in stellar atmospheres
- Large-amplitude longitudinal oscillations in solar prominences simulated with different resolutions
- Magneto-acoustic waves in sunspots from observations and numerical simulations
- The effect of local magnetic fields in quiet regions of stellar atmospheres simulated with MANCHA
- Rayleigh-Taylor instability in partially ionized prominence plasma