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系外行星大气。利用相位分辨发射光谱学研究系外行星大气的热结构。

Exoplanet atmosphere. Thermal structure of an exoplanet atmosphere from phase-resolved emission spectroscopy.

机构信息

Department of Astronomy and Astrophysics, University of Chicago, 5640 South Ellis Avenue, Chicago, IL 60637, USA. NASA Sagan Fellow.

CASA, Department of Astrophysical and Planetary Sciences, University of Colorado, 389-UCB, Boulder, CO 80309, USA.

出版信息

Science. 2014 Nov 14;346(6211):838-41. doi: 10.1126/science.1256758. Epub 2014 Oct 9.

Abstract

Exoplanets that orbit close to their host stars are much more highly irradiated than their solar system counterparts. Understanding the thermal structures and appearances of these planets requires investigating how their atmospheres respond to such extreme stellar forcing. We present spectroscopic thermal emission measurements as a function of orbital phase ("phase-curve observations") for the highly irradiated exoplanet WASP-43b spanning three full planet rotations using the Hubble Space Telescope. With these data, we construct a map of the planet's atmospheric thermal structure, from which we find large day-night temperature variations at all measured altitudes and a monotonically decreasing temperature with pressure at all longitudes. We also derive a Bond albedo of 0.18(-0.12)(+0.07) and an altitude dependence in the hot-spot offset relative to the substellar point.

摘要

系外行星靠近其宿主恒星运行,受到的辐射比太阳系中的行星要强得多。为了了解这些行星的热结构和外观,需要研究它们的大气如何对这种极端恒星辐射做出响应。我们利用哈勃太空望远镜,对受到强烈辐射的系外行星 WASP-43b 进行了三个完整的行星自转周期的轨道相位(“相位曲线观测”)的光谱热发射测量。通过这些数据,我们构建了该行星大气热结构的地图,从中我们发现,在所有测量的高度上,昼夜温差很大,并且在所有经度上,温度随压力单调下降。我们还得出了 0.18(-0.12)(+0.07)的邦德反照率,以及相对于亚恒星点的热点偏移随高度的变化。

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