SA023-05
Scintillation Observations and Response of The Ionosphere to Electrodynamics (SORTIE) Mission

Monday, 14 December 2020: 11:42
Virtual
Geoff Crowley1, Chad S Fish2, Erik Stromberg3, Roderick A Heelis4, Russell Stoneback5, Cheryl Y Huang6, Patrick Roddy6, Crystal Frazier7, Michael Perdue8, Mark Mankey9, Irfan Azeem10, Matthew Depew8, Anthony Swenson7 and SORTIE Team, (1)ASTRA, LLC, Louisville, CO, United States, (2)Atmospheric and Space Technology Research Associates LLC, Louisville, CO, United States, (3)Atmospheric and Space Technology Research Associates, LLC, Louisville, United States, (4)University Texas Dallas, Richardson, TX, United States, (5)University of Texas at Dallas, Richardson, TX, United States, (6)Air Force Research Laboratory Albuquerque, Albuquerque, NM, United States, (7)Atmospheric & Space Technology Research Associates LLC, Louisville, CO, United States, (8)University of Texas at Dallas, Center for Space Sciences, Richardson, TX, United States, (9)Utdallas, Richardson, United States, (10)Atmospheric and Space Technology Research Associates, LLC, Louisville, CO, United States
Abstract:
At low and middle latitudes, wave-like plasma perturbations are thought to provide the seeds for larger perturbations that may evolve non-linearly to produce irregularities, which in turn have deleterious effects on HF communications and global positioning systems. There is currently no comprehensive atlas of measurements describing the global spatial or temporal distribution of wave-like perturbations in the ionosphere. The SORTIE mission, a CubeSat experiment with team members from ASTRA, AFRL, UTD, and Boston College, was designed to help map and further understand the wave-like plasma perturbation distributions throughout the ionosphere. The SORTIE 6U CubeSat sensor package measures key in-situ plasma parameters, and includes an ion velocity meter and a planar Langmuir probe. SORTIE will provide (1) the initial spectrum of wave perturbations which are the starting point for plasma instabilities; (2) measured electric fields which determine the magnitude of the instability growth rate near the region where plasma bubbles are generated; (3) initial observations of irregularities in plasma density which result from plasma instability growth. The SORTIE spacecraft was deployed from the ISS in February 2020 and began data collection shortly after orbit insertion. The measurements are expected to continue for at least a year. In this presentation we present early results of the SORTIE mission, as well as reviewing the science objectives, the spacecraft and instruments.