The subsurface ocean of Europa is a high priority target in the search for extraterrestrial life, but direct investigations are hindered by the presence of a thick, exterior ice shell. Here we present spectral line and continuum maps of Europa obtained over four epochs in May-June 2021 using the Atacama Large Millimeter/submillimeter Array (ALMA), to search for molecular emission from atmospheric plumes, with the aim of investigating subsurface processes. Using a 3D physical model, we obtained upper limits for the plume abundances of HCN, H2CO, SO2 and CH3OH. If active plume(s) were present, they contained very low abundances of these molecules. Assuming a total gas production rate of 1029 s−1, our H2CO abundance upper limit of <0.016\% is more than an order of magnitude less than measured in the Enceladus plume by the Cassini spacecraft, implying a possible chemical difference between the plume source materials for these two icy moons.
@article{arxiv.2404.05525,
title = {ALMA Spectroscopy of Europa: A Search for Active Plumes},
author = {M. A. Cordiner and A. E. Thelen and I. -L. Lai and W. -L. Tseng and C. A. Nixon and Y. -J. Kuan and G. L. Villanueva and L. Paganini and S. B. Charnley and K. D. Retherford},
journal= {arXiv preprint arXiv:2404.05525},
year = {2024}
}
Comments
Submitted to IAU Symposium 383 conference proceedings --- Astrochemistry VIII: From the First Galaxies to the Formation of Habitable Worlds