Parker Solar Probe evidence for the absence of whistlers close to the Sun to scatter strahl and regulate heat flux
arXiv:2111.03619 · doi:10.3847/2041-8213/ac4015
Abstract
Using the Parker Solar Probe FIELDS bandpass filter data and SWEAP electron data from Encounters 1 through 9, we show statistical properties of narrowband whistlers from ~16 Rs to ~130 Rs, and compare wave occurrence to electron properties including beta, temperature anisotropy and heat flux. Whistlers are very rarely observed inside ~28 Rs (~0.13 au). Outside 28 Rs, they occur within a narrow range of parallel electron beta from ~1 to 10, and with a beta-heat flux occurrence consistent with the whistler heat flux fan instability. Because electron distributions inside ~30 Rs display signatures of the ambipolar electric field, the lack of whistlers suggests that the modification of the electron distribution function associated with the ambipolar electric field or changes in other plasma properties must result in lower instability limits for the other modes (including solitary waves, ion acoustic waves) that are observed close to the Sun. The lack of narrowband whistler-mode waves close to the Sun and in regions of either low (<.1) or high (>10) beta is also significant for the understanding and modeling of the evolution of flare-accelerated electrons, and the regulation of heat flux in astrophysical settings including other stellar winds, the interstellar medium, accretion disks, and the intra-galaxy cluster medium
References in corpus (20)
- The Solar Probe Cup on Parker Solar Probe
- The Solar Probe ANalyzers -- Electrons on Parker Solar Probe
- 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
- Statistical Study of Whistler Waves in the Solar Wind at 1 AU
- Suppression of electron thermal conduction by whistler turbulence in a sustained thermal gradient
- Sunward propagating whistler waves collocated with localized magnetic field holes in the solar wind: Parker Solar Probe observations at 35.7 Sun radii
- Electron heat flux in the near-Sun environment
- Particle-In-Cell simulation of whistler heat flux instabilities in the solar wind: heat flux regulation and electron halo formation
- Alternative high plasma beta regimes of electron heat-flux instabilities in the solar wind
- Whistler wave occurrence and the interaction with strahl electrons during the first encounter of Parker Solar Probe
- 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
- Narrowband large amplitude whistler-mode waves in the solar wind and their association with electrons: STEREO waveform capture observations
- Whistler Waves and Electron Properties in the Inner Heliosphere: Helios Observations
- Triggered ion acoustic waves in the solar wind
- Narrowband oblique whistler-mode waves: Comparing properties observed by Parker Solar Probe at <0.2 AU and STEREO at 1 AU
- Whistler instability driven by the sunward electron deficit in the solar wind
- Modeling interactions of narrowband large amplitude whistler-mode waves with electrons in the solar wind inside ~.3 AU and at 1 AU using a particle tracing code
- Stability of superthermal strahl electrons in the solar wind