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一颗系外行星的光谱。

A spectrum of an extrasolar planet.

作者信息

Richardson L Jeremy, Deming Drake, Horning Karen, Seager Sara, Harrington Joseph

机构信息

Exoplanets and Stellar Astrophysics Laboratory, Mail Code 667, Goddard Space Flight Center, Greenbelt, Maryland 20771, USA.

出版信息

Nature. 2007 Feb 22;445(7130):892-5. doi: 10.1038/nature05636.

Abstract

Of the over 200 known extrasolar planets, 14 exhibit transits in front of their parent stars as seen from Earth. Spectroscopic observations of the transiting planets can probe the physical conditions of their atmospheres. One such technique can be used to derive the planetary spectrum by subtracting the stellar spectrum measured during eclipse (planet hidden behind star) from the combined-light spectrum measured outside eclipse (star + planet). Although several attempts have been made from Earth-based observatories, no spectrum has yet been measured for any of the established extrasolar planets. Here we report a measurement of the infrared spectrum (7.5-13.2 microm) of the transiting extrasolar planet HD 209458b. Our observations reveal a hot thermal continuum for the planetary spectrum, with an approximately constant ratio to the stellar flux over this wavelength range. Superposed on this continuum is a broad emission peak centred near 9.65 microm that we attribute to emission by silicate clouds. We also find a narrow, unidentified emission feature at 7.78 microm. Models of these 'hot Jupiter' planets predict a flux peak near 10 microm, where thermal emission from the deep atmosphere emerges relatively unimpeded by water absorption, but models dominated by water fit the observed spectrum poorly.

摘要

在已知的200多颗太阳系外行星中,有14颗从地球上看会在其母恒星前方发生凌日现象。对凌日行星的光谱观测可以探测其大气的物理状况。一种这样的技术可用于通过从食外(恒星+行星)测量的合成光谱中减去食时(行星隐藏在恒星后面)测量的恒星光谱来推导行星光谱。尽管已经有多个地面天文台进行了尝试,但尚未对任何一颗已确认的太阳系外行星测量到光谱。在此,我们报告了对凌日系外行星HD 209458b的红外光谱(7.5 - 13.2微米)的测量结果。我们的观测揭示了行星光谱中的一个热的热连续谱,在这个波长范围内与恒星通量的比值大致恒定。叠加在这个连续谱上的是一个以9.65微米附近为中心的宽发射峰,我们将其归因于硅酸盐云的发射。我们还在7.78微米处发现了一个窄的、未识别的发射特征。这些“热木星”行星的模型预测在10微米附近有一个通量峰值,在那里来自深层大气的热发射相对不受水吸收的阻碍,但以水为主的模型与观测光谱拟合不佳。

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