The Radial Dependence of Proton-scale Magnetic Spectral Break in Slow Solar Wind during PSP Encounter 2
arXiv:2001.08239 · doi:10.3847/1538-4365/ab672d
Abstract
Magnetic field fluctuations in the solar wind are commonly observed to follow a power law spectrum. Near proton-kinetic scales, a spectral break occurs which is commonly interpreted as a transition to kinetic turbulence. However, this transition is not yet entirely understood. By studying the scaling of the break with various plasma properties, it may be possible to constrain the processes leading to the onset of kinetic turbulence. Using data from Parker Solar Probe (\textit{PSP}), we measure the proton scale break over a range of heliocentric distances, enabling a measurement of the transition from inertial to kinetic scale turbulence under various plasma conditions. We find that the break frequency increases as the heliocentric distance decreases in the slow solar wind following a power law . We also compare this to the characteristic plasma ion scales to relate the break to the possible physical mechanisms occurring at this scale. The ratio between and , the Doppler shifted ion cyclotron resonance scale, is approximately unity for all plasma . At high the ratio between and , the Doppler shifted gyroscale, is approximately unity; while at low the ratio between and , the Doppler shifted proton-inertial length is unity. Due to the large comparable Alfvén and solar wind speeds, we analyze these results using both the standard and modified Taylor hypothesis, demonstrating robust statistical results.
Accepted by ApJS, Dec 14, 2019
References in corpus (16)
- Anisotropic scaling of magnetohydrodynamic turbulence
- The Evolution and Role of Solar Wind Turbulence in the Inner Heliosphere
- Recent progress in astrophysical plasma turbulence from solar wind observations
- Wave turbulence in incompressible Hall MHD
- Radial Dependence of the Frequency Break Between Fluid and Kinetic Scales in the Solar Wind Fluctuations
- Ion Scale Electromagnetic Waves in the Inner Heliosphere
- Spectral Slope Variation at Proton Scales from Fast to Slow Solar Wind
- Collisionless Reconnection in Magnetohydrodynamic and Kinetic Turbulence
- Plasma beta dependence of the ion-scale spectral break of solar wind turbulence: high-resolution 2D hybrid simulations
- Physical Interpretation of the Angle Dependent Magnetic Helicity Spectrum in the Solar Wind: The Nature of Turbulent Fluctuations near the Proton Gyroradius Scale
- A Prospectus on Kinetic Heliophysics
- Contextual Predictions for Parker Solar Probe II: Turbulence Properties and Taylor Hypothesis
- Nature of stochastic ion heating in the solar wind: testing the dependence on plasma beta and turbulence amplitude
- A Modified Version of Taylor's Hypothesis for Solar Probe Plus Observations
- On the interpretation of Parker Solar Probe Turbulent Signals
- Radial evolution of stochastic heating in low- solar wind
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- Inner-Heliosphere Signatures of Ion-Scale Dissipation and Nonlinear Interaction
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- Coherent events at ion scales in the inner Heliosphere: \textit{Parker Solar Probe} observations during the first Encounter
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- The radial variation of the solar wind turbulence spectra near the kinetic break scale from Parker Solar Probe measurements
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- Observational evidence for solar wind proton heating by ion-scale turbulence
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