Near-infrared transmission spectrum of the warm-uranus GJ 3470b with the Wide Field Camera-3 on the Hubble Space Telescope
arXiv:1405.1056 · doi:10.1051/0004-6361/201423809
Abstract
The atmospheric composition of low-mass exoplanets is the object of intense observational and theoretical investigations. GJ3470b is a warm uranus recently detected in transit across a bright late-type star. The transit of this planet has already been observed in several band passes from the ground and space, allowing observers to draw an intriguing yet incomplete transmission spectrum of the planet atmospheric limb. In particular, published data in the visible suggest the existence of a Rayleigh scattering slope, making GJ3470b a unique case among the known neptunes, while data obtained beyond 2 um are consistent with a flat infrared spectrum. The unexplored near-infrared spectral region between 1 and 2 um, is thus key to undertanding the atmospheric nature of GJ3470b. Here, we report on the first space-borne spectrum of GJ3470, obtained during one transit of the planet with WFC3 on board HST, operated in stare mode. The spectrum covers the 1.1--1.7-um region with a resolution of about 300. We retrieve the transmission spectrum of GJ3470b with a chromatic planet-to-star radius ratio precision of 0.15% (about one scale height) per 40-nm bins. At this precision, the spectrum appears featureless, in good agreement with ground-based and Spitzer infrared data at longer wavelengths, pointing to a flat transmission spectrum from 1 to 5 um. We present new simulations of transmission spectra for GJ3470b, which allow us to show that the HST/WFC3 observations rule out cloudless hydrogen-rich atmospheres (>10 sigma) as well as hydrogen-rich atmospheres with tholin haze (>5 sigma). Adding our near-infrared measurements to the full set of previously published data from 0.3 to 5 um, we find that a cloudy, hydrogen-rich atmosphere can explain the full transmission spectrum if, at the terminator, the clouds are located at low pressures (<1 mbar) or the water mixing ratio is extremely low (<1 ppm).
Astronomy & Astrophysics, in press. 19 figures. 2 tables
References in corpus (5)
- Rayleigh scattering in the transit spectrum of HD 189733b
- HST/STIS Optical Transit Transmission Spectra of the hot-Jupiter HD209458b
- Theoretical Transit Spectra for GJ 1214b and Other "Super-Earths"
- Warm Ice Giant GJ 3470b. II Revised Planetary and Stellar Parameters from Optical to Near-infrared Transit Photometry
- Atmospheric Characterization of 5 Hot Jupiters with Wide Field Camera 3 on the Hubble Space Telescope
Cited by in corpus (33)
- Spectrally resolved detection of sodium in the atmosphere of HD189733b with the HARPS spectrograph
- Water Vapour Absorption in the Clear Atmosphere of an exo-Neptune
- A Sub-Neptune Exoplanet with a Low-Metallicity Methane-Depleted Atmosphere and Mie-Scattering Clouds
- The Detectability and Characterization of the TRAPPIST-1 Exoplanet Atmospheres with JWST
- Hubble PanCET: An extended upper atmosphere of neutral hydrogen around the warm Neptune GJ 3470 b
- Observing transiting planets with JWST -- Prime targets and their synthetic spectral observations
- The Atmospheric Circulation of the Hot Jupiter WASP-43b: Comparing Three-Dimensional Models to Spectrophotometric Data
- The long egress of GJ~436b's giant exosphere
- Impact of occultations of stellar active regions on transmission spectra: Can occultation of a plage mimic the signature of a blue sky?
- Instrumentation for the detection and characterization of exoplanets
- Theoretical transmission spectra of exoplanet atmospheres with hydrocarbon haze: Effect of creation, growth, and settling of haze particles. I. Model description and first results
- WASP-80b has a dayside within the T-dwarf range
- Atmospheric Regimes and Trends on Exoplanets and Brown Dwarfs
- Effects of Bulk Composition on The Atmospheric Dynamics on Close-in Exoplanets
- A He I upper atmosphere around the warm Neptune GJ 3470b
- Dusty outflows in planetary atmospheres: Understanding "super-puffs" and transmission spectra of sub-Neptunes
- An Overabundance of Low-density Neptune-like Planets
- On The Compatibility of Ground-based and Space-based Data: WASP-96 b, An Example
- Signatures of Nitrogen Chemistry in Hot Jupiter Atmospheres
- HST PanCET program: A Cloudy Atmosphere for the promising JWST target WASP-101b
- Into the UV: A precise transmission spectrum of HAT-P-41b using Hubble's WFC3/UVIS G280 grism
- Transmission spectroscopy for the warm sub-Neptune HD3167c: evidence for molecular absorption and a possible high metallicity atmosphere
- TOI-674b: an oasis in the desert of exo-Neptunes transiting a nearby M dwarf
- A mirage of the cosmic shoreline: Venus-like clouds as a statistical false positive for exoplanet atmospheric erosion
- A Condensation-Coalescence Cloud Model for Exoplanetary Atmospheres: Formulation and Test Applications to Terrestrial and Jovian Clouds
- A Temperature Trend for Clouds and Hazes in Exoplanets Atmospheres
- Evolution and Spectral Response of a Steam Atmosphere for Early Earth with a coupled climate-interior model
- Obliquity measurement and atmospheric characterization of the WASP-74 planetary system
- Peering above the clouds of the warm Neptune GJ 436b with CRIRES+
- TOI-3785 b: A Low-Density Neptune Orbiting an M2-Dwarf Star
- Atmospheric Characterization via Broadband Color Filters on the PLAnetary Transits and Oscillations of stars (PLATO) Mission
- HST Transmission Spectra of the Hot-Neptune HD 219666 b: Detection of Water and the Challenge of Constraining Both Water and Methane
- Effect of clouds on emission spectra for Super Venus