Earth’s transmission spectrum from lunar eclipse observations

被引:0
作者
Enric Pallé
María Rosa Zapatero Osorio
Rafael Barrena
Pilar Montañés-Rodríguez
Eduardo L. Martín
机构
[1] Instituto de Astrofísica de Canarias,Physics Department
[2] Vía Láctea s/n,undefined
[3] E38205 La Laguna,undefined
[4] Tenerife,undefined
[5] Spain ,undefined
[6] University of Central Florida,undefined
[7] PO Box 162385,undefined
[8] Orlando,undefined
[9] Florida 32816,undefined
[10] USA,undefined
来源
Nature | 2009年 / 459卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Part of the little we know about the atmospheres of extrasolar planets is gleaned from spectra obtained from starlight that has passed through the planetary atmosphere as it transits the stellar disk. As planet-finding techniques improve, the point where analogues of Earth are likely to be found is approaching. So what are we looking for? A good starting point for comparisons would be a transmission spectrum of our own planet. Now we have one, based on the characterization of sunlight reflected from the Moon towards the Earth during a lunar eclipse, a scenario that resembles the observing geometry of a planetary transit. This indirect method produces an optical and near-infrared transmission spectrum of the Earth. Some biologically relevant atmospheric features that are weak in reflected spectra are much stronger in the transmission spectrum, and stronger than predicted by modelling.
引用
收藏
页码:814 / 816
页数:2
相关论文
共 50 条
[41]   Observations in transmission during the solar eclipse of august 31, 1932 [J].
Martin, JR ;
McCuskey, SW .
PROCEEDINGS OF THE INSTITUTE OF RADIO ENGINEERS, 1933, 21 (04) :0567-0573
[42]   CORONAL PHYSICS FROM ECLIPSE OBSERVATIONS [J].
KOUTCHMY, S .
SOLAR CORONA, 1993, 14 (04) :29-39
[43]   ECLIPSE OBSERVATIONS FROM ORBITING SPACECRAFT [J].
MOORE, RC ;
SCHILLIN.GF .
JOURNAL OF THE ASTRONAUTICAL SCIENCES, 1966, 13 (01) :7-+
[44]   SOLAR ECLIPSE OBSERVATIONS FROM AIRCRAFT [J].
ARNQUIST, WN .
ISA TRANSACTIONS, 1966, 5 (02) :105-&
[45]   Using Lunar Observations to Validate Clouds and the Earth's Radiant Energy System Pointing Accuracy [J].
Daniels, Janet L. ;
Smith, G. Louis ;
Priestley, Kory J. ;
Thomas, Susan .
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING, 2016, 54 (01) :65-73
[46]   Observations made in the Lyon Observatory during the lunar eclipse of the 16 October 1921. [J].
Guillaume, J ;
Grouiller, H .
COMPTES RENDUS HEBDOMADAIRES DES SEANCES DE L ACADEMIE DES SCIENCES, 1921, 173 :708-709
[47]   Penumbra lunar eclipse observations reveal anomalous thermal performance of Lunakhod 2 reflectors [J].
Gao, Tian-Quan ;
Zhang, Cai-Shi ;
Zhao, Hong-Chao ;
Zhou, Li-Xiang ;
Wu, Xian-Lin ;
Yeh, Hsienchi ;
Li, Ming .
CHINESE PHYSICS B, 2022, 31 (05)
[48]   Multiwavelength observations of a bright impact flash during the 2019 January total lunar eclipse [J].
Madiedo, Jose M. ;
Ortiz, Jose L. ;
Morales, Nicolas ;
Santos-Sanz, Pablo .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2019, 486 (03) :3380-3387
[49]   A 2.8 ARC-MIN BEAMWIDTH ANTENNA - LUNAR ECLIPSE OBSERVATIONS AT 3.2 MM [J].
KING, HE ;
JACOBS, E ;
STACEY, JM .
IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 1966, AP14 (01) :82-&
[50]   Penumbra lunar eclipse observations reveal anomalous thermal performance of Lunakhod 2 reflectors [J].
高添泉 ;
张才士 ;
赵宏超 ;
周立祥 ;
吴先霖 ;
叶贤基 ;
李明 .
Chinese Physics B, 2022, (05) :252-258