Journal article
The Cusp as a VLF Saucer Source: First Rocket Observations of Long-Duration VLF Saucers on the Dayside
Geophysical research letters, Vol.48(2), e2020GL090747
01/28/2021
DOI: 10.1029/2020GL090747
Abstract
Auroral whistler-mode radio emissions called saucers are of fundamental interest because they require an unusually stationary emission process in the dynamic auroral environment, and it is a mystery how that can happen in this or similar conditions elsewhere in geospace. The Cusp Alfven and Plasma Electrodynamics Rocket (CAPER-2), launched into the cusp, obtained the first rocket measurements of a large-scale, multiple-armed dayside saucer, similar to those observed by the DEMETER satellite, with the addition of particle measurements and ground-based measurements. Analysis of saucer shapes, directional measurements using waveforms, and ground-based data show that, accounting for estimated uncertainties, these originate at altitudes similar to 4,000 km within the cusp, the eastern side of which is penetrated by the rocket similar to 100 s after the saucers are encountered. On-board particle instruments show dispersed electron bursts in the cusp, Alfvenically accelerated at altitudes at or above the saucer sources.
Plain Language Summary Electrons, precipitating down Earth's high-latitude magnetic field lines, emit radio waves at angles to the background magnetic field, depending on frequency. When spacecrafts traverse through a region close to the source, they observe descending and ascending frequency signatures referred to as saucers. This research focused on rocket measurements of large-scale, multiarmed saucers on the dayside. Using ray-tracing software and hodogram analysis of the electric field waveforms combined with ground-based measurements, we were able to determine the source location of the saucers to be in the magnetic field's cusp at altitudes near 4,000 km. Additionally, particle measurements on-board the rocket showed time dispersed bursts of electrons typically associated with Alfvenic acceleration, which can be traced back to a source height that is equal to or above the source heights of the observed saucers. This is the first time that dayside large-scale saucers have been associated with the cusp.
Key Points
.
First observation of large-scale dayside saucers from a sounding rocket
The saucers are estimated to originate at similar to 4,000 km on cusp field lines to within estimated uncertainties
Dispersed electrons observed in the cusp were accelerated at altitudes at or above the saucer signal source region
Details
- Title: Subtitle
- The Cusp as a VLF Saucer Source: First Rocket Observations of Long-Duration VLF Saucers on the Dayside
- Creators
- C. Moser - Dartmouth CollegeJ. LaBelle - Dartmouth CollegeS. Hatch - University of BergenJ. I. Moen - University of OsloA. Spicher - University of OsloT. Takahashi - University of OsloC. A. Kletzing - University of IowaS. Bounds - University of IowaK. Oksavik - University of BergenF. Sigernes - Univ Ctr Svalbard, Dept Arctic Geophys, Longyearbyen, NorwayT. K. Yeoman - University of Leicester
- Resource Type
- Journal article
- Publication Details
- Geophysical research letters, Vol.48(2), e2020GL090747
- DOI
- 10.1029/2020GL090747
- ISSN
- 0094-8276
- eISSN
- 1944-8007
- Publisher
- Amer Geophysical Union
- Number of pages
- 9
- Grant note
- Norway (NFR); Research Council of Norway 223252; 275653 / Research Council of Norway Japan (NIPR) China (CRIRP) Japan (ISEE) Sweden (VR); Swedish Research Council NNX17AF92G / NASA; National Aeronautics & Space Administration (NASA) 4000126731 / European Space Agency, EO Science for Society contract United Kingdom (UKRI) Finland (SA)
- Language
- English
- Date published
- 01/28/2021
- Academic Unit
- Physics and Astronomy
- Record Identifier
- 9984428779602771
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