2019AJ....157...21P


Query : 2019AJ....157...21P

2019AJ....157...21P - Astron. J., 157, 21-21 (2019/January-0)

Ground-based spectroscopy of the exoplanet XO-2b using a systematic wavelength calibration.

PEARSON K.A., GRIFFITH C.A., ZELLEM R.T., KOSKINEN T.T. and ROUDIER G.M.

Abstract (from CDS):

Exoplanets orbiting close to their host star are expected to support a large ionosphere, which extends to larger pressures than witnessed in our solar system. These ionospheres can be investigated with ground-based transit observations of the optical signatures of alkali metals, which are the source of the ions. However, most ground-based transit spectra do not systematically resolve the wings of the features and continuum, as needed to constrain the alkali abundances. Here we present new observations and analyses of optical transit spectra that cover the Na doublet in the atmosphere of the exoplanet XO-2b. To assess the consistency of our results, observations were obtained from two separate platforms: Gemini/GMOS and Mayall/KOSMOS. To mitigate the systematic errors, we chose XO-2, because it has a binary companion of the same brightness and stellar type, which provides an ideal reference star to model Earth's atmospheric effects. We find that interpretation of the data is highly sensitive to time-varying translations along the detector, which change according to wavelength and differ between the target and reference star. It was necessary to employ a time-dependent cross-correlation to align our wavelength bins and correct for atmospheric differential refraction. This approach allows us to resolve the wings of the Na line across five wavelength bins at a resolution of ∼1.6 nm and limit the abundance of Na. We obtain consistent results from each telescope with an Na amplitude of 521 ± 161 and 403 ± 186 ppm for GMOS and KOSMOS, respectively. The results are analyzed with a radiative transfer model that includes the effects of ionization. The data are consistent with a clear atmosphere between ∼1 and 100 mbar that establishes a lower limit on Na at 0.4–0.3+2 ppm ([Na/H] = -0.64–0.6+0.78), consistent with solar. However, we cannot rule out the presence of clouds at ∼10 mbar that allow for higher Na abundances, which would be consistent with the stellar metallicity measured for the host star ([Na/H] = 0.485 ± 0.043).

Abstract Copyright: © 2018. The American Astronomical Society. All rights reserved.

Journal keyword(s): planets and satellites: atmospheres - methods: analytical - methods: data analysis - methods: observational - planets and satellites: individual XO-2b - techniques: spectroscopic

VizieR on-line data: <Available at CDS (J/AJ/157/21): table2.dat table3.dat table4.dat>

Simbad objects: 13

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Number of rows : 13
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 WASP-96b Pl 00 04 11.1376764240 -47 21 38.320831728           ~ 62 0
2 BD+50 1471 PM* 07 48 06.4723053776 +50 13 32.920598923   12.002 11.138 10.669 10.243 G9V 173 1
3 BD+50 1471b Pl 07 48 06.4723053776 +50 13 32.920598923           ~ 159 1
4 BD+50 1471B EB* 07 48 07.4814105508 +50 13 03.255439301   11.927 11.086 10.631 10.216 G9V 55 0
5 BD-03 2978b Pl 10 42 14.0836906368 -03 50 06.260144388           ~ 101 0
6 WASP-31b Pl 11 17 45.3578677224 -19 03 17.217631800           ~ 129 1
7 HAT-P-12b Pl 13 57 33.4668726399 +43 29 36.601508739           ~ 176 1
8 WASP-39b Pl 14 29 18.4151689656 -03 26 40.204480380           ~ 203 1
9 CD-27 10695b Pl 15 59 50.9491505016 -28 03 42.312819096           ~ 261 1
10 HD 189733b Pl 20 00 43.7129433648 +22 42 39.073143456           ~ 1436 1
11 HD 209458b Pl 22 03 10.7727465312 +18 53 03.549393384           ~ 1859 1
12 NAME BD+37 4734Bb Pl 22 57 46.8442481880 +38 40 30.358351704           ~ 247 1
13 WASP-6b Pl 23 12 37.7368282608 -22 40 26.273805024           ~ 138 1

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