Resonant Absorption of Transverse Oscillations and Associated Heating in a Solar Prominence. I- Observational aspects
arXiv:1506.08965 · doi:10.1088/0004-637X/809/1/71
Abstract
Transverse magnetohydrodynamic (MHD) waves have been shown to be ubiquitous in the solar atmosphere and can in principle carry sufficient energy to generate and maintain the Sun's million-degree outer atmosphere or corona. However, direct evidence of the dissipation process of these waves and subsequent heating has not yet been directly observed. Here we report on high spatial, temporal, and spectral resolution observations of a solar prominence that show a compelling signature of so-called resonant absorption, a long hypothesized mechanism to efficiently convert and dissipate transverse wave energy into heat. Aside from coherence in the transverse direction, our observations show telltale phase differences around 180 degrees between transverse motions in the plane-of-sky and line-of-sight velocities of the oscillating fine structures or threads, and also suggest significant heating from chromospheric to higher temperatures. Comparison with advanced numerical simulations support a scenario in which transverse oscillations trigger a Kelvin-Helmholtz instability (KHI) at the boundaries of oscillating threads via resonant absorption. This instability leads to numerous thin current sheets in which wave energy is dissipated and plasma is heated. Our results provide direct evidence for wave-related heating in action, one of the candidate coronal heating mechanisms.
28 pages, 9 figures, accepted for publication in ApJ. Part II by Patrick Antolin et al. will appear soon
References in corpus (10)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- A Contemporary View of Coronal Heating
- Nonlinear Instability of kink oscillations due to shear motions
- Fine strand-like structure in the solar corona from MHD transverse oscillations
- Resonant Absorption of Transverse Oscillations and Associated Heating in a Solar Prominence. II- Numerical aspects
- First direct measurements of transverse waves in solar polar plumes using SDO/AIA
- Resonant absorption in complicated plasma configurations: applications to multi-stranded coronal loop oscillations
- Transverse oscillations of flowing prominence threads observed with Hinode
- Damping of Fast Magnetohydrodynamic Oscillations in Quiescent Filament Threads
- Quasi-simultaneous multi-frequency observations of inverted-spectrum GPS candidate sources
Cited by in corpus (54)
- Coronal heating by MHD waves
- On the generation of solar spicules and Alfvénic waves
- Partially Ionized Plasmas in Astrophysics
- Solar science with the Atacama Large Millimeter/submillimeter Array - A new view of our Sun
- Global sausage oscillation of solar flare loops detected by the Interface Region Imaging Spectrograph
- Critical Science Plan for the Daniel K. Inouye Solar Telescope (DKIST)
- Probing the physics of the solar atmosphere with the Multi-slit Solar Explorer (MUSE): I. Coronal Heating
- Damping of nonlinear standing kink oscillations: a numerical study
- Measurements of Non-Thermal Line Widths in Solar Active Regions
- Transverse Wave Induced Kelvin-Helmholtz Rolls in Spicules
- Modelling observed decay-less oscillations as resonantly enhanced Kelvin-Helmholtz vortices from transverse MHD waves and their seismological application
- The effects of resistivity and viscosity on the Kelvin-Helmholtz instability in oscillating coronal loops
- Frequency-dependent Alfvén-wave propagation in the solar wind: Onset and suppression of parametric decay instability
- Impact of Type II Spicules in the Corona: Simulations and Synthetic Observables
- Contribution of mode coupling and phase-mixing of Alfvén waves to coronal heating
- Energetics of the Kelvin-Helmholtz instability induced by transverse waves in twisted coronal loops
- Two Kinds of Dynamic Behavior in a Quiescent Prominence Observed by the NVST
- Forward Modelling of Standing Kink Modes in Coronal Loops I. Synthetic Views
- On Kelvin-Helmholtz and parametric instabilities driven by coronal waves
- Phase mixing and wave heating in a complex coronal plasma
- High Frequency Waves in Chromospheric Spicules
- Solar prominences embedded in flux ropes: morphological features and dynamics from 3D MHD simulations
- Hinode and IRIS observations of the magnetohydrodynamic waves propagating from the photosphere to the chromosphere in a sunspot
- Corona and XUV emission modelling of the Sun and Sun-like stars
- Helical motions of fine-structure prominence threads observed by Hinode and IRIS
- Resonant Absorption of Axisymmetric Modes in Twisted Magnetic Flux Tubes
- Coronal cooling as a result of mixing by the nonlinear Kelvin--Helmholtz instability
- Measurements of Photospheric and Chromospheric Magnetic Field Structures Associated with Chromospheric Heating over a Solar Plage Region
- Contribution of phase-mixing of Alfvén waves to coronal heating in multi-harmonic loop oscillations
- Anisotropic magnetohydrodynamic turbulence driven by parametric decay instability: the onset of phase mixing and Alfvén wave turbulence
- Observations of instability-driven nanojets
- Halpha Doppler shifts in a tornado in the solar corona
- Resonant absorption of surface sausage and surface kink modes under photospheric conditions
- Persistent fast kink magnetohydrodynamic waves detected in a quiescent prominence
- Evidence for the two fluid scenario in solar prominences
- Simultaneous longitudinal and transverse oscillations in filament threads after a failed eruption
- Effect of Coronal Loop Structure on Wave Heating by Phase Mixing
- Comparison of damping mechanisms for transverse waves in solar coronal loops
- In-situ generation of transverse MHD waves from colliding flows in the solar corona
- The dynamic chromosphere: pushing the boundaries of observations and models
- Propagating Kink Waves in an Open Coronal Magnetic Flux Tube with Gravitational Stratification: Magnetohydrodynamic Simulation and Forward Modelling
- Inferring physical parameters in solar prominence threads
- Fast Magnetosonic Waves and Flows in a Solar Prominence Foot: Observations and Modeling
- Propagating wave in active region-loops, located over the solar disk observed by the Interface Region Imaging Spectrograph
- SSALMON - The Solar Simulations for the Atacama Large Millimeter Observatory Network
- Hot prominence spicules launched from turbulent cool solar prominences
- Universal scaling behavior of resonant absorption
- Damping of coronal oscillations in self-consistent 3D radiative MHD simulations of the solar atmosphere
- Shock-Cloud Interaction in the Solar Corona
- A new view of the solar interface region from the Interface Region Imaging Spectrograph (IRIS)
- Pre-flare and active region plasma flows and structure seen by the short wavelength camera on SOLAR-C/EUVST
- Self-similar expansion model of cylindrical flux ropes combined with Alfven wave current system
- Magnetic reconnection and the Kelvin-Helmholtz instability in the solar corona
- Incompressible Extended Magnetohydrodynamics Waves: Implications of Electron Inertia