Total Electron Temperature Derived from Quasi-Thermal Noise Spectroscopy In the Pristine Solar Wind: Parker Solar Probe Observations
arXiv:2303.11035 · doi:10.1051/0004-6361/202245450
Abstract
The Quasi-thermal noise (QTN) technique is a reliable tool to yield accurate measurements of the electron parameters in the solar wind. We apply this method on Parker Solar Probe (PSP) observations to derive the total electron temperature () from the linear fit of the high-frequency part of the QTN spectra acquired by the RFS/FIELDS instrument, and present a combination of 12-day period of observations around each perihelion from Encounter One (E01) to Ten (E10) (with E08 not included) with the heliocentric distance varying from about 13 to 60 solar radii (). We find that the total electron temperature decreases with the distance as , which is much slower than adiabatic. The extrapolated based on PSP observations is consistent with the exospheric solar wind model prediction at 10 , Helios observations at 0.3 AU and Wind observations at 1 AU. Also, , extrapolated back to 10 , is almost the same as the strahl electron temperature (measured by SPAN-E) which is considered to be closely related to or even almost equal to the coronal electron temperature. Furthermore, the radial profiles in the slower solar wind (or flux tube with larger mass flux) are steeper than those in the faster solar wind (or flux tube with smaller mass flux). More pronounced anticorrelated - is observed when the solar wind is slower and closer to the Sun.
10 pages, 7 figures, and Astronomy & Astrophysics Accepted
References in corpus (17)
- Switchbacks in the near-Sun magnetic field: long memory and impact on the turbulence cascade
- The Solar Probe Cup on Parker Solar Probe
- First in-situ Measurements of Electron Density and Temperature from Quasi-Thermal Noise Spectroscopy with Parker Solar Probe/FIELDS
- Electrons in the Young Solar Wind: First Results from the Parker Solar Probe
- Identification of Magnetic Flux Ropes from Parker Solar Probe Observations during the First Encounter
- Characteristic scales of magnetic switchback patches near the Sun and their possible association with solar supergranulation and granulation
- Enhanced proton parallel temperature inside patches of switchbacks in the inner heliosphere
- Statistics and Polarization of Type III Radio Bursts Observed in the Inner Heliosphere
- Electron heat flux in the near-Sun environment
- The Radial Evolution of the Solar Wind as Organized by Electron Distribution Parameters
- WISPR Imaging of a Pristine CME
- Multiscale Solar Wind Turbulence Properties inside and near Switchbacks measured by Parker Solar Probe
- Solar wind energy flux observations in the inner heliosphere: First results from Parker Solar Probe
- Small-scale Magnetic Flux Ropes with Field-aligned Flows via the PSP In-situ Observations
- Determination of Solar Wind Angular Momentum and Alfvén Radius from Parker Solar Probe Observations
- Weak line discovered by Voyager 1 in the interstellar medium: Quasi-thermal noise produced by very few fast electrons
- Source-dependent properties of two slow solar wind states