2018ApJ...855L..11O


Query : 2018ApJ...855L..11O

2018ApJ...855L..11O - Astrophys. J., 855, L11-L11 (2018/March-1)

A new window into escaping exoplanet atmospheres: 10830 Å line of helium.

OKLOPCIC A. and HIRATA C.M.

Abstract (from CDS):

Observational evidence for escaping exoplanet atmospheres has been obtained for a few exoplanets to date. It comes from strong transit signals detected in the ultraviolet, most notably in the wings of the hydrogen Lyα (Lyα) line. However, the core of the Lyα line is often heavily affected by interstellar absorption and geocoronal emission, limiting the information about the atmosphere that can be extracted from that part of the spectrum. Transit observations in atomic lines that are (a) sensitive enough to trace the rarefied gas in the planetary wind and (b) do not suffer from significant extinction by the interstellar medium could enable more detailed observations, and thus provide better constraints on theoretical models of escaping atmospheres. The absorption line of a metastable state of helium at 10830 Å could satisfy both of these conditions for some exoplanets. We develop a simple 1D model of escaping planetary atmospheres containing hydrogen and helium. We use it to calculate the density profile of helium in the 23S metastable excited state and the expected in-transit absorption at 10830 Å for two exoplanets known to have escaping atmospheres. Our results indicate that exoplanets similar to GJ 436b and HD 209458b should exhibit enhanced transit depths at 10830 Å, with ∼8% and ∼2% excess absorption in the line core, respectively.

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

Journal keyword(s): atomic processes - planets and satellites: atmospheres - planets and satellites: gaseous planets - radiative transfer

Simbad objects: 4

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Number of rows : 4
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 Ross 905b Pl 11 42 11.0933350978 +26 42 23.650782778           ~ 810 1
2 Ross 905 PM* 11 42 11.0933350978 +26 42 23.650782778   12.06 10.613 10.272 8.24 M3V 645 1
3 HD 209458b Pl 22 03 10.7727465312 +18 53 03.549393384           ~ 1859 1
4 HD 209458 V* 22 03 10.7727465312 +18 53 03.549393384   8.21 7.63     F9V 1115 1

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