English

Spitzer IRS Observations of Titan as a Precursor to JWST MIRI Observations

Earth and Planetary Astrophysics 2023-07-25 v1

Abstract

In this work we present, for the first time, infrared spectra of Titan from the Spitzer Space Telescope (200420092004-2009). The data are from both the short wavelength-low resolution (SL, 5.1314.29μm,R601275.13-14.29\mathrm{\mu m}, R\sim60-127) and short wavelength-high resolution channels (SH, 9.8919.51μm,R6009.89 - 19.51\mathrm{\mu m}, R\sim600) showing the emissions of CH4_{4}, C2_{2}H2_{2}, C2_{2}H4_{4}, C2_{2}H6_{6}, C3_{3}H4_{4}, C3_{3}H6_{6}, C3_{3}H8_{8}, C4_{4}H2_{2}, HCN, HC3_{3}N, and CO2_{2}. We compare the results obtained for Titan from Spitzer to those of the Cassini Composite Infrared Spectrometer (CIRS) for the same time period, focusing on the 16.3519.35μm16.35-19.35\mathrm{\mu m} wavelength range observed by the SH channel but impacted by higher noise levels in CIRS observations. We use the SH data to provide estimated haze extinction cross-sections for the 16.6717.54μm16.67-17.54\mathrm{\mu m} range that are missing in previous studies. We conclude by identifying spectral features in the 16.3519.35μm16.35-19.35\mathrm{\mu m} wavelength range, including two prominent emission features at 16.39 and 17.35μm17.35\mathrm{\mu m}, that could be analyzed further through upcoming James Webb Space Telescope Cycle 1 observations with the Mid-Infrared Instrument (5.028.3μm,R150035005.0-28.3\mathrm{\mu m}, R\sim1500-3500). We also highlight gaps in current spectroscopic knowledge of molecular bands, including candidate trace species such as C60_{60} and detected trace species such as C3_{3}H6_{6}, that could be addressed by theoretical and laboratory study.

Keywords

Cite

@article{arxiv.2305.13234,
  title  = {Spitzer IRS Observations of Titan as a Precursor to JWST MIRI Observations},
  author = {Brandon Park Coy and Conor A. Nixon and Naomi Rowe-Gurney and Richard Achterberg and Nicholas A. Lombardo and Leigh N. Fletcher and Patrick Irwin},
  journal= {arXiv preprint arXiv:2305.13234},
  year   = {2023}
}

Comments

Accepted to Planetary Science Journal April 28, 2023