An HST/STIS Optical Transmission Spectrum of Warm Neptune GJ 436b
Joshua D. Lothringer, Bj\"orn Benneke, Ian J. M. Crossfield, Gregory, W. Henry, Caroline Morley, Diana Dragomir, Travis Barman, Heather Knutson,, Eliza Kempton, Jonathan Fortney, Peter McCullough, Andrew W. Howard

TL;DR
This study presents the first space-based optical transmission spectrum of GJ 436b, revealing atmospheric properties and stellar activity insights, aiding future JWST observations of warm Neptune atmospheres.
Contribution
First optical transmission spectrum of GJ 436b obtained with HST/STIS, providing new constraints on atmospheric composition and stellar activity.
Findings
No alkali absorption features detected.
Indicates moderate to high metallicity (~100-1000x solar).
Rules out some highly scattering haze models.
Abstract
GJ 436b is a prime target for understanding warm Neptune exoplanet atmospheres and a target for multiple JWST GTO programs. Here, we report the first space-based optical transmission spectrum of the planet using two HST/STIS transit observations from 0.53-1.03 microns. We find no evidence for alkali absorption features, nor evidence of a scattering slope longward of 0.53 microns. The spectrum is indicative of moderate to high metallicity (~100-1000x solar) while moderate metallicity scenarios (~100x solar) require aerosol opacity. The optical spectrum also rules out some highly scattering haze models. We find an increase in transit depth around 0.8 microns in the transmission spectra of 3 different sub-Jovian exoplanets (GJ 436b, HAT-P-26b, and GJ 1214b). While most of the data come from STIS, data from three other instruments may indicate this is not an instrumental effect. Only the…
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