2022AJ....163....8L


Query : 2022AJ....163....8L

2022AJ....163....8L - Astron. J., 163, 8-8 (2022/January-0)

Mapping the pressure-dependent day-night temperature contrast of a strongly irradiated atmosphere with HST spectroscopic phase curve.

LEW B.W.P., APAI D., ZHOU Y., MARLEY M., MAYORGA L.C., TAN X., PARMENTIER V., CASEWELL S. and XU S.

Abstract (from CDS):

Many brown dwarfs are on ultrashort-period and tidally locked orbits around white dwarf hosts. Because of these small orbital separations, the brown dwarfs are irradiated at levels similar to hot Jupiters. Yet, they are easier to observe than hot Jupiters because white dwarfs are fainter than main-sequence stars at near-infrared wavelengths. Irradiated brown dwarfs are, therefore, ideal hot Jupiter analogs for studying the atmospheric response under strong irradiation and fast rotation. We present the 1.1-1.67 µm spectroscopic phase curve of the irradiated brown dwarf (SDSS1411-B) in the SDSS J141126.20 + 200911.1 brown dwarf-white dwarf binary with the near-infrared G141 grism of the Hubble Space Telescope Wide Field Camera 3. SDSS1411-B is a 50MJup brown dwarf with an irradiation temperature of 1300 K and has an orbital period of 2.02864 hr. Our best-fit model suggests a phase-curve amplitude of 1.4% and places an upper limit of 11° for the phase offset from the secondary eclipse. After fitting the white dwarf spectrum, we extract the phase-resolved brown dwarf emission spectra. We report a highly wavelength-dependent day-night spectral variation, with a water-band flux variation of about 360% ± 70% and a comparatively small J-band flux variation of 37% ± 2%. By combining the atmospheric modeling results and the day-night brightness temperature variations, we derive a pressure-dependent temperature contrast. We discuss the difference in the spectral features of SDSS1411-B and hot Jupiter WASP-43b, as well as the lower-than-predicted day-night temperature contrast of J4111-BD. Our study provides the high-precision observational constraints on the atmospheric structures of an irradiated brown dwarf at different orbital phases.

Abstract Copyright: © 2021. The Author(s). Published by the American Astronomical Society.

Journal keyword(s): Brown dwarfs - Exoplanet atmospheres - Hot Jupiters - White dwarf stars

Simbad objects: 21

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Number of rows : 21
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 2MASS J00001354+2554180 BD* 00 00 13.54488 +25 54 18.0648           T4.5 31 0
2 V* GU Psc B BD* 01 12 36.53808 +17 04 29.9424           T3.5 68 0
3 LP 468-128 WD* 01 35 32.9751928872 +14 45 55.898593668   17.1   16.6   DA+L5 48 0
4 HD 10069b Pl 01 37 25.0332798696 -45 40 40.374717456           ~ 369 1
5 WD 0137-349 WD* 01 39 42.8531929464 -34 42 39.577891392 14.60 15.33 15.30     DA3 90 0
6 NAME WD 0137-349B BD* 01 39 42.9 -34 42 37           L8 32 0
7 GD 1400 WD* 01 47 21.8246176800 -21 56 51.386849088   15.38 15.15 15.42   DA4.1 87 0
8 WASP-12b Pl 06 30 32.7966092352 +29 40 20.263502460           ~ 762 1
9 WASP-19b Pl 09 53 40.0765648584 -45 39 33.057187596           ~ 370 1
10 WASP-43b Pl 10 19 38.0088913464 -09 48 22.605801336           ~ 354 1
11 2MASS J10393137+3256263 BD* 10 39 31.37784 +32 56 26.3580           L7.0+T4.0 15 0
12 SDSS J141126.20+200911.1 WD* 14 11 26.2220815704 +20 09 11.039979600           DA+? 41 0
13 BD+22 2716b Pl 14 33 06.3571702344 +21 53 40.981395876           ~ 160 1
14 2MASS J15530228+1532369 BD* 15 53 02.28072 +15 32 36.9132           T6.5+T7.5 55 0
15 GALEX J155720.8+091625 WD* 15 57 20.7787057920 +09 16 24.781916856           DAZ 41 0
16 HD 149026b Pl 16 30 29.6185771608 +38 20 50.308980864           ~ 350 1
17 BD+47 2846b Pl 19 28 59.3538826128 +47 58 10.217007804           ~ 377 1
18 HD 189733b Pl 20 00 43.7129433648 +22 42 39.073143456           ~ 1432 1
19 HD 209458b Pl 22 03 10.7727465312 +18 53 03.549393384           ~ 1856 1
20 DENIS J220340.5-121511 WD* 22 03 40.6044672864 -12 15 11.943387792   17.20   17.51 17.68 DAZ+L3: 22 0
21 2MASS J22282889-4310262 BD* 22 28 28.89432 -43 10 26.2740           T6.5 66 0

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