Ion Temperatures in the Low Solar Corona: Polar Coronal Holes at Solar Minimum
arXiv:0810.0018 · doi:10.1088/0004-637X/691/1/794
Abstract
In the present work we use a deep-exposure spectrum taken by the SUMER spectrometer in a polar coronal hole in 1996 to measure the ion temperatures of a large number of ions at many different heights above the limb between 0.03 and 0.17 solar radii. We find that the measured ion temperatures are almost always larger than the electron temperatures and exhibit a non-monotonic dependence on the charge-to-mass ratio. We use these measurements to provide empirical constraints to a theoretical model of ion heating and acceleration based on gradually replenished ion-cyclotron waves. We compare the wave power required to heat the ions to the observed levels to a prediction based on a model of anisotropic magnetohydrodynamic turbulence. We find that the empirical heating model and the turbulent cascade model agree with one another, and explain the measured ion temperatures, for charge-to-mass ratios smaller than about 0.25. However, ions with charge-to-mass ratios exceeding 0.25 disagree with the model; the wave power they require to be heated to the measured ion temperatures shows an increase with charge-to-mass ratio (i.e., with increasing frequency) that cannot be explained by a traditional cascade model. We discuss possible additional processes that might be responsible for the inferred surplus of wave power.
11 pages (emulateapj style), 10 figures, ApJ, in press (v. 691, January 20, 2009)
References in corpus (8)
- Self-consistent Coronal Heating and Solar Wind Acceleration from Anisotropic Magnetohydrodynamic Turbulence
- On the Generation, Propagation, and Reflection of Alfven Waves from the Solar Photosphere to the Distant Heliosphere
- Alfvenic Turbulence in the Extended Solar Corona: Kinetic Effects and Proton Heating
- Weak compressible magnetohydrodynamic turbulence in the solar corona
- Energy Flux and Bottleneck Effect in Turbulence
- Improved Constraints on the Preferential Heating and Acceleration of Oxygen Ions in the Extended Solar Corona
- Solar off-limb line widths: Alfven waves, ion-cyclotron waves, and preferential heating
- On Collisionless Electron-Ion Temperature Equilibration in the Fast Solar Wind
Cited by in corpus (32)
- Solar UV and X-Ray Spectral Diagnostics
- Empirical Constraints on Proton and Electron Heating in the Fast Solar Wind
- Origins of the Ambient Solar Wind: Implications for Space Weather
- Heating and Acceleration of the Fast Solar Wind by Alfvén Wave Turbulence
- A comparison of Alpha Particle and Proton Beam Differential flow in Collisionally Young Solar Wind
- The Role of Turbulence in Coronal Heating and Solar Wind Expansion
- Evidence of Wave Damping at Low Heights in a Polar Coronal Hole
- Three-dimensional simulation of the fast solar wind driven by compressible magnetohydrodynamic turbulence
- Proton, Electron, and Ion Heating in the Fast Solar Wind from Nonlinear Coupling Between Alfvenic and Fast-Mode Turbulence
- A zone of preferential ion heating extends tens of solar radii from Sun
- Observational Quantification of the Energy Dissipated by Alfvén Waves in a Polar Coronal Hole: Evidence that Waves Drive the Fast Solar Wind
- The Impact of Recent Advances in Laboratory Astrophysics on our Understanding of the Cosmos
- An Efficient Approximation of the Coronal Heating Rate for Use in Global Sun-Heliosphere Simulations
- Accelerating waves in polar coronal holes as seen by EIS and SUMER
- Direct and Inverse Cascades in the Acceleration Region of the Fast Solar Wind
- Evidence for Wave Heating of the Quiet Sun Corona
- On the temperature of the solar wind
- Strong Preferential Ion Heating is Limited to within the Solar Alfven Surface
- Alpha particle thermodynamics in the inner heliosphere fast solar wind
- Low-frequency Alfven Waves Produced by Magnetic Reconnection in the Sun's Magnetic Carpet
- Measurements of Anisotropic Ion Temperatures, Non-Thermal Velocities, and Doppler Shifts in a Coronal Hole
- Preferential Heating and Acceleration of Heavy Ions in Impulsive Solar Flares
- Properties of a Polar Coronal Hole During the Solar Minimum in 2007
- Time-Dependent Turbulent Heating of Open Flux Tubes in the Chromosphere, Corona, and Solar Wind
- Testing Alfvén wave propagation in a "realistic" set-up of the solar atmosphere
- Spectroscopic Measurements of the Ion Velocity Distribution at the Base of the Fast Solar Wind
- Towards a realistic evaluation of transport coefficients in non-equilibrium space plasmas
- Fe XII and Fe XIII Line Widths in the Polar Off-limb Solar Corona up to 1.5 Rsun
- A study of line widths and kinetic parameters of ions in the solar corona
- Estimating Ion Temperatures at the Polar Coronal Hole Boundary
- The level of non-thermal velocity fluctuations deduced from Doppler spectroscopy and its role on TJ-II confinement
- A new model for heating of Solar North Polar Coronal Hole