Characterizing Transiting Exoplanet Atmospheres in the 2030s with the Hubble Space Telescope
Joshua D. Lothringer, Hannah R. Wakeford, Robert C. Frazier, Lili Alderson, Munazza K. Alam, David K. Sing, Mei Ting Mak, Nikole K. Lewis, Lia Corrales, Eva-Maria Ahrer
astro-ph.IM, astro-ph.EP
Submitted: 2026-06-02
Comments: 7 pages, 4 figures; this article is a response to the call for white papers by STScI on "Building a Roadmap for Hubble science into the 2030s."
License: http://creativecommons.org/licenses/by-nc-sa/4.0/
The gist: The Hubble Space Telescope inaugurated the era of exoplanet atmospheric characterization.
Terminology
Abstract
The Hubble Space Telescope inaugurated the era of exoplanet atmospheric characterization. While the James Webb Space Telescope has largely taken up the mantle of infrared atmospheric characterization, Hubble's unique short-wavelength capabilities remain unmatched. Recent theoretical advances in exoplanet atmospheric science combined with new observing strategies, like those offered by WFC3-UVIS/G280, have opened science cases that only Hubble can address for the foreseeable future. In this white paper, we discuss these new windows into the atmospheres of other worlds, focusing on characterization of their hydrostatic lower atmosphere, and identify the critical capabilities necessary for future observations. We highlight three overall science cases that will depend on the continued short-wavelength capabilities of Hubble: measuring aerosol scattering slopes, characterizing metal absorption in ultra-hot Jupiters, and understanding stellar activity with Transit Light Source effect decontamination and flare monitoring. Throughout, we highlight useful synergies between HST and JWST. This article is a response to the call for white papers by the Space Telescope Science Institute on "Building a Roadmap for Hubble science into the 2030s."
Sources
- A New Window into Planet Formation and Migration: Refractory-to-Volatile Elemental Ratios in Ultra-hot Jupiters
- Into the UV: A precise transmission spectrum of HAT-P-41b using Hubble's WFC3/UVIS G280 grism
Related papers
- A signal dedispersion algorithm for imaging-based transient searches
- AVICA: A fully automated CASA pipeline for large volume VLBI data calibration
- Spectral Map Making with SPHEREx
- Long-Integration Magnetar Burst Observatory (LIMBO): Instrument Summary and Early FRB Rate Constraints
- Towards independent event horizon imaging of the supermassive black holes in M87 and the Milky Way
- A PINK update: Improvements to the CELEBI fast radio burst data reduction and analysis pipeline