EGU24-3, updated on 08 Mar 2024
https://doi.org/10.5194/egusphere-egu24-3
EGU General Assembly 2024
© Author(s) 2024. This work is distributed under
the Creative Commons Attribution 4.0 License.

A Novel Backtracing Model to Study the Emission of Energetic Neutral Atoms at Titan

Tyler Tippens1, Elias Roussos2, Sven Simon1, and Lucas Liuzzo3
Tyler Tippens et al.
  • 1School of Earth and Atmospheric Sciences, Georgia Institute of Technology, Atlanta, United States of America (tyler.tippens@eas.gatech.edu)
  • 2Max Planck Institute for Solar System Research, Goettingen, Germany
  • 3Space Sciences Laboratory, University of California, Berkeley, Berkeley, United States of America

To study the emission of energetic neutral atoms (ENAs) at Titan, we have developed a novel model that takes into account a spacecraft detector’s limited field of view and traces energetic magnetospheric particles backward in time. ENAs are generated by charge exchange between Titan’s atmospheric neutrals and energetic magnetospheric ions. By tracing these ions through the draped electromagnetic fields in Titan’s environment, we generate synthetic ENA images and compare them to Cassini observations from the TA flyby. Our model can reproduce the intensity and morphology of the observed images only when field line draping is included. Using a realistic detector geometry is necessary to determine the influence of this draping on the ENA images: the field perturbations eliminate a localized feature in the emission pattern, which is a different effect than found by previous models utilizing an infinitely extended detector. We demonstrate that ENA observations from TA contain signatures of the time-varying Saturnian magnetospheric environment at Titan: the modeled ENA emission morphology and the effect of field line draping are different for the background field vectors measured during the inbound and outbound legs of TA. The visibility and qualitative effect of the draping on observed ENA images vary strongly between different detector locations and pointings. Depending on the viewing geometry, field line draping may add features to the synthetic ENA images, remove features from them, or have no qualitative effect at all. Our study emphasizes the challenges and the potential for remote sensing of Titan’s interaction region using ENA imaging.

How to cite: Tippens, T., Roussos, E., Simon, S., and Liuzzo, L.: A Novel Backtracing Model to Study the Emission of Energetic Neutral Atoms at Titan, EGU General Assembly 2024, Vienna, Austria, 14–19 Apr 2024, EGU24-3, https://doi.org/10.5194/egusphere-egu24-3, 2024.