Observational Quantification of the Energy Dissipated by Alfvén Waves in a Polar Coronal Hole: Evidence that Waves Drive the Fast Solar Wind
arXiv:1302.5403 · doi:10.1088/0004-637X/776/2/78
Abstract
We present a measurement of the energy carried and dissipated by Alfvén waves in a polar coronal hole. Alfvén waves have been proposed as the energy source that heats the corona and drives the solar wind. Previous work has shown that line widths decrease with height in coronal holes, which is a signature of wave damping, but have been unable to quantify the energy lost by the waves. This is because line widths depend on both the non-thermal velocity v_nt and the ion temperature T_i. We have implemented a means to separate the T_i and v_nt contributions using the observation that at low heights the waves are undamped and the ion temperatures do not change with height. This enables us to determine the amount of energy carried by the waves at low heights, which is proportional to v_nt. We find the initial energy flux density present was 6.7 +/- 0.7 x 10^5 erg cm^-2 s^-1, which is sufficient to heat the coronal hole and acccelerate the solar wind during the 2007 - 2009 solar minimum. Additionally, we find that about 85% of this energy is dissipated below 1.5 R_sun, sufficiently low that thermal conduction can transport the energy throughout the coronal hole, heating it and driving the fast solar wind. The remaining energy is roughly consistent with what models show is needed to provide the extended heating above the sonic point for the fast solar wind. We have also studied T_i, which we found to be in the range of 1 - 2 MK, depending on the ion species.
Accepted for the Astrophysical Journal
References in corpus (6)
- Alfven Waves in the Lower Solar Atmosphere
- Evidence of Wave Damping at Low Heights in a Polar Coronal Hole
- Spectroscopic signature of Alfvén waves damping in a polar coronal hole up to 0.4 solar radii
- Solar off-limb line widths: Alfven waves, ion-cyclotron waves, and preferential heating
- Spectral line width decrease in the solar corona: resonant energy conversion from Alfv{é}n to acoustic waves
- Measurements of Anisotropic Ion Temperatures, Non-Thermal Velocities, and Doppler Shifts in a Coronal Hole
Cited by in corpus (38)
- Solar UV and X-Ray Spectral Diagnostics
- Coronal heating by MHD waves
- Origins of the Ambient Solar Wind: Implications for Space Weather
- Wave Heating of the Solar Atmosphere
- First direct measurements of transverse waves in solar polar plumes using SDO/AIA
- The Role of Turbulence in Coronal Heating and Solar Wind Expansion
- MHD Waves in open coronal structures
- Probing the physics of the solar atmosphere with the Multi-slit Solar Explorer (MUSE): I. Coronal Heating
- A self-consistent model of the coronal heating and solar wind acceleration including compressible and incompressible heating processes
- Magnetic Untwisting in Solar Jets that Go into the Outer Corona in Polar Coronal Holes
- Frequency-dependent Alfvén-wave propagation in the solar wind: Onset and suppression of parametric decay instability
- Evidence for Wave Heating of the Quiet Sun Corona
- Trigger Mechanism of Solar Subflares in a Braided Coronal Magnetic Structure
- Low-frequency Alfven Waves Produced by Magnetic Reconnection in the Sun's Magnetic Carpet
- Hinode and IRIS observations of the magnetohydrodynamic waves propagating from the photosphere to the chromosphere in a sunspot
- One Year in the Life of Young Suns: Data Constrained Corona-Wind Model of kappa1 Ceti
- Modeling ion beams, kinetic instabilities, and waves observed by the Parker Solar Probe near perihelia
- The Solar Minimum Eclipse of 2019 July 2: II. The First Absolute Brightness Measurements and MHD Model Predictions of Fe X, XI and XIV out to 3.4 Rs
- The Effect of Solar Wind Expansion and Non-Equilibrium Ionization on the Broadening of Coronal Emission Lines
- Magnetic Tornado Properties: A Substantial Contribution to the Solar Coronal Heating via Efficient Energy Transfer
- Anisotropic magnetohydrodynamic turbulence driven by parametric decay instability: the onset of phase mixing and Alfvén wave turbulence
- Density Fluctuations in a Polar Coronal Hole
- How the area of solar coronal holes affects the properties of high-speed solar wind streams near Earth -- An analytical model
- A Statistical Investigation of Decayless Oscillations in Small-scale Coronal Loops Observed by Solar Orbiter/EUI
- Exploring the damping of Alfvén waves along a long off-limb coronal loop, up to 1.4 R
- Coronal Density and Temperature Profiles Calculated by Forward Modeling EUV Emission Observed by SDO/AIA
- Measured reduction in Alfvén wave energy propagating through longitudinal gradients scaled to match solar coronal holes
- Propagating Kink Waves in an Open Coronal Magnetic Flux Tube with Gravitational Stratification: Magnetohydrodynamic Simulation and Forward Modelling
- Flux-tube-dependent propagation of Alfvén waves in the solar corona
- Spectroscopic Measurements of the Ion Velocity Distribution at the Base of the Fast Solar Wind
- Uniturbulence and Alfven wave solar model
- Monte-Carlo simulations of intensity profiles for energetic particle propagation
- Propagating Oscillations in the Lower Atmosphere under Coronal Holes
- Fe XII and Fe XIII Line Widths in the Polar Off-limb Solar Corona up to 1.5 Rsun
- Inferring the Coronal Density Irregularity from EUV Spectra
- Estimating Ion Temperatures at the Polar Coronal Hole Boundary
- Experimental study of Alfvén wave reflection from an Alfvén-speed gradient relevant to the solar coronal holes
- The Quiet-Sun DEM Under Kappa: Diagnostic Degeneracy and the Failure of the Conductive Closure