On quasi-parallel whistler waves in the solar wind
arXiv:2005.12606 · doi:10.1063/5.0003401
Abstract
The recent simulations showed that the whistler heat flux instability, which presumably produces the most of quasi-parallel coherent whistler waves in the solar wind, is not efficient in regulating the electron heat conduction. In addition, recent spacecraft measurements indicated that some fraction of coherent whistler waves in the solar wind may propagate anti-parallel to the electron heat flux, being produced due to a perpendicular temperature anisotropy of suprathermal electrons. We present analysis of properties of parallel and anti-parallel whistler waves unstable at electron heat fluxes and temperature anisotropies of suprathermal electrons typical of the pristine solar wind. Assuming the electron population consisting of counter-streaming dense thermal core and tenuous suprathermal halo populations, we perform a linear stability analysis to demonstrate that anti-parallel whistler waves are expected to have smaller frequencies, wave numbers and growth rates compared to parallel whistler waves. The stability analysis is performed over a wide range of parameters of core and halo electron populations. Using the quasi-linear scaling relation we show that anti-parallel whistler waves saturate at amplitudes of one order of magnitude smaller than parallel whistler waves, which is at about in the pristine solar wind. The analysis shows that the presence of anti-parallel whistler waves in the pristine solar wind is more likely to be obscured by turbulent magnetic field fluctuations, because of lower frequencies and smaller amplitudes compared to parallel whistler waves. The presented results will be also valuable for numerical simulations of the electron heat flux regulation in the solar wind.
submitted to Physics of Plasmas
References in corpus (19)
- Electrons in the Young Solar Wind: First Results from the Parker Solar Probe
- Whistler mode waves and the electron heat flux in the solar wind: Cluster observations
- Ion Scale Electromagnetic Waves in the Inner Heliosphere
- Parker Solar Probe observations of proton beams simultaneous with ion-scale waves
- Statistical Study of Whistler Waves in the Solar Wind at 1 AU
- Experimental determination of whistler wave dispersion relation in the solar wind
- Suppressed effective viscosity in the bulk intergalactic plasma
- Electron energy partition across interplanetary shocks: I. Methodology and Data Product
- Whistler wave generation by halo electrons in the solar wind
- Cumulative effect of Weibel-type instabilities in counterstreaming plasmas with non-Maxwellian anisotropies
- Suprathermal electron strahl widths in the presence of narrow-band whistler waves in the solar wind
- Quasilinear Approach of the Whistler Heat-Flux Instability in the Solar Wind
- Anomalous Cooling of Coronal Loops with Turbulent Suppression of Thermal Conduction
- Whistler instability stimulated by the suprathermal electrons present in space plasmas
- Heating and cooling of coronal loops with turbulent suppression of parallel heat conduction
- Quasilinear approach of the cumulative whistler instability in fast solar winds: Constraints of electron temperature anisotropy
- Whistler instabilities from the interplay of electron anisotropies in space plasmas: A quasilinear approach
- Observed instability constraints on electron heat flux in the solar wind
- [Plasma 2020 Decadal] The Material Properties of Weakly Collisional, High-Beta Plasmas
Cited by in corpus (5)
- On the role of solar wind expansion as a source of whistler waves: scattering of suprathermal electrons and heat flux regulation in the inner heliosphere
- Parker Solar Probe evidence for scattering of electrons in the young solar wind by narrowband whistler-mode waves
- Stability of superthermal strahl electrons in the solar wind
- The Stability of the Electron Strahl against the Oblique Fast-magnetosonic/Whistler Instability in the Inner Heliosphere
- Current sheets, plasmoids and flux ropes in the heliosphere. Part II: Theoretical aspects