Statistics and Polarization of Type III Radio Bursts Observed in the Inner Heliosphere
arXiv:1912.03371 · doi:10.3847/1538-4365/ab5dc0
Abstract
We present initial results from the Radio Frequency Spectrometer (RFS), the high frequency component of the FIELDS experiment on the Parker Solar Probe (PSP). During the first PSP solar encounter (2018 November), only a few small radio bursts were observed. During the second encounter (2019 April), copious Type III radio bursts occurred, including intervals of radio storms where bursts occurred continuously. In this paper, we present initial observations of the characteristics of Type III radio bursts in the inner heliosphere, calculating occurrence rates, amplitude distributions, and spectral properties of the observed bursts. We also report observations of several bursts during the second encounter which display circular polarization in the right hand polarized sense, with a degree of polarization of 0.15-0.38 in the range from 8-12 MHz. The degree of polarization can be explained either by depolarization of initially 100% polarized -mode emission, or by direct generation of emission in the and -mode simultaneously. Direct in situ observations in future PSP encounters could provide data which can distinguish these mechanisms.
12 pages, 7 figures, to be published in ApJS
References in corpus (7)
- A Review of Solar Type III Radio Bursts
- Coherent Emission Mechanisms in Astrophysical Plasmas
- 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
- Low frequency observations of transient quasi-periodic radio emission from the solar atmosphere
- Statistical Survey of Type III Radio Bursts at Long Wavelengths Observed by the Solar TErrestrial RElations Observatory (STEREO)/Waves Instruments: Radio Flux Density Variations with Frequency
- Statistical Survey of Type III Radio Bursts at Long Wavelengths Observed by the Solar TErrestrial RElations Observatory (STEREO)/Waves Instruments: Goniopolarimetric Properties and Radio Source Locations
Cited by in corpus (19)
- Switchbacks in the near-Sun magnetic field: long memory and impact on the turbulence cascade
- First in-situ Measurements of Electron Density and Temperature from Quasi-Thermal Noise Spectroscopy with Parker Solar Probe/FIELDS
- Parker Solar Probe: Four Years of Discoveries at Solar Cycle Minimum
- The 17 April 2021 widespread solar energetic particle event
- Using Parker Solar Probe observations during the first four perihelia to constrain global magnetohydrodynamic models
- An Anisotropic Density Turbulence Model from the Sun to 1 au Derived From Radio Observations
- Constraining Global Coronal Models with Multiple Independent Observables
- Direct First PSP Observation of the Interaction of Two Successive Interplanetary Coronal Mass Ejections in November 2020
- The active region source of a type III radio storm observed by Parker Solar Probe during Encounter 2
- Tracking a beam of electrons from the low solar corona into interplanetary space with the Low Frequency Array, Parker Solar Probe and 1 au spacecraft
- Total Electron Temperature Derived from Quasi-Thermal Noise Spectroscopy In the Pristine Solar Wind: Parker Solar Probe Observations
- Periodicities in an active region correlated with Type III radio bursts observed by Parker Solar Probe
- Structured type III radio bursts observed in interplanetary space
- Simulation of plasma emission in magnetized plasmas
- Tackling the Unique Challenges of Low-frequency Solar Polarimetry with the Square Kilometre Array Low Precursor: Pipeline Implementation
- Coronal Diagnostics of Solar Type-III Radio Bursts Using LOFAR and PSP Observations
- Electromagnetic radiation by turbulent, magnetized and randomly inhomogeneous solar radio sources generated by electron beams
- Coronal electron density: Insights from radio and in situ observations, and EUHFORIA modeling
- Parker Solar Probe detects solar radio bursts related with a behind-the-limb active region