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Open AccessJournal ArticleDOI

INFRARED TRANSMISSION SPECTROSCOPY OF THE EXOPLANETS HD 209458b AND XO-1b USING THE WIDE FIELD CAMERA-3 ON THE HUBBLE SPACE TELESCOPE

TLDR
In this paper, the authors reported WFC3 spectroscopy of the giant planets HD 209458b and XO-1b in transit, using spatial scanning mode for maximum photon-collecting efficiency.
Abstract
Exoplanetary transmission spectroscopy in the near-infrared using the Hubble Space Telescope (HST) NICMOS is currently ambiguous because different observational groups claim different results from the same data, depending on their analysis methodologies. Spatial scanning with HST/WFC3 provides an opportunity to resolve this ambiguity. We here report WFC3 spectroscopy of the giant planets HD 209458b and XO-1b in transit, using spatial scanning mode for maximum photon-collecting efficiency. We introduce an analysis technique that derives the exoplanetary transmission spectrum without the necessity of explicitly decorrelating instrumental effects, and achieves nearly photon-limited precision even at the high flux levels collected in spatial scan mode. Our errors are within 6% (XO-1) and 26% (HD 209458b) of the photon-limit at a resolving power of λ/δλ ~ 70, and are better than 0.01% per spectral channel. Both planets exhibit water absorption of approximately 200 ppm at the water peak near 1.38 μm. Our result for XO-1b contradicts the much larger absorption derived from NICMOS spectroscopy. The weak water absorption we measure for HD 209458b is reminiscent of the weakness of sodium absorption in the first transmission spectroscopy of an exoplanet atmosphere by Charbonneau et al. Model atmospheres having uniformly distributed extra opacity of 0.012 cm2 g−1 account approximately for both our water measurement and the sodium absorption. Our results for HD 209458b support the picture advocated by Pont et al. in which weak molecular absorptions are superposed on a transmission spectrum that is dominated by continuous opacity due to haze and/or dust. However, the extra opacity needed for HD 209458b is grayer than for HD 189733b, with a weaker Rayleigh component.

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Citations
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Discriminating Between Cloudy, Hazy and Clearsky Exoplanets Using Refraction

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Considerations for atmospheric retrieval of high-precision brown dwarf spectra

TL;DR: In this article, a parametric pressure-temperature (P-T) profile for brown dwarfs consisting of multiple atmospheric layers, parameterised by the temperature change across each layer, is proposed.
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Aurora: A Generalised Retrieval Framework for Exoplanetary Transmission Spectra

TL;DR: A next-generation atmospheric retrieval framework for exoplanetary transmission spectra is proposed in this article, which is based on state-of-the-art architectures and incorporates the following key advancements: a generalised compositional retrieval allowing for H-rich and H-poor atmospheres, generalised prescription for inhomogeneous clouds/hazes, multiple Bayesian inference algorithms for high-dimensional retrievals, modular considerations for refraction, forward scattering, and Mie-scattering, and noise modeling functionalities.
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The impact of mixing treatments on cloud modelling in 3D simulations of hot Jupiters

TL;DR: In this article, the role of mixing by replacing the default convective treatment used in previous works with a more physically relevant mixing treatment based on global circulation is investigated, and it is shown that uncertainty in the efficiency of sedimentation through the sedimentation factor plays a larger role in shaping cloud thickness and its radiative feedback on the local gas temperatures than the switch in mixing treatment.
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Clear and Cloudy Exoplanet Forecasts for JWST: Maps, Retrieved Composition and Constraints on Formation with MIRI and NIRCam

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References
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Journal ArticleDOI

Analytic Lightcurves for Planetary Transit Searches

TL;DR: In this paper, exact analytic formulae for the eclipse of a star described by quadratic or nonlinear limb darkening are presented for the HST observations of HD 209458, showing that the ratio of the planetary to stellar radii is 0.1207+-0.0003.
Journal ArticleDOI

Analytic Light Curves for Planetary Transit Searches

TL;DR: In this paper, the exact analytic formulae for the eclipse of a star described by quadratic or nonlinear limb darkening were presented, and the authors applied these results to the Hubble Space Telescope observations of HD 209458, showing that the ratio of the planetary to stellar radii is 0.1207 ± 0.0003.
Journal ArticleDOI

Detection of Planetary Transits Across a Sun-like Star.

TL;DR: High-precision, high-cadence photometric measurements of the star HD 209458 are reported, which is known from radial velocity measurements to have a planetary-mass companion in a close orbit and the detailed shape of the transit curve due to both the limb darkening of thestar and the finite size of the planet is clearly evident.
Journal ArticleDOI

Detection of an Extrasolar Planet Atmosphere

TL;DR: In this paper, high-precision spectrophotometric observations of four planetary transits of HD 209458, in the region of the sodium resonance doublet at 589.3 nm, were reported.
Journal ArticleDOI

Gravity and limb-darkening coefficients for the Kepler, CoRoT, Spitzer, uvby, UBVRIJHK, and Sloan photometric systems

TL;DR: In this article, a more general differential equation was used, which now takes into account local gravity variations and the effects of convection, which turn out to be very significant for cool stars.
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