ATMOSPHERIC RETRIEVAL FOR SUPER-EARTHS: UNIQUELY CONSTRAINING THE ATMOSPHERIC COMPOSITION WITH TRANSMISSION SPECTROSCOPY
暂无分享,去创建一个
[1] A. Brix. Bayesian Data Analysis, 2nd edn , 2005 .
[2] Clive D Rodgers,et al. Inverse Methods for Atmospheric Sounding: Theory and Practice , 2000 .
[3] I N Bronstein,et al. Taschenbuch der Mathematik , 1966 .
[4] R. Perna,et al. THE EFFECTS OF IRRADIATION ON HOT JOVIAN ATMOSPHERES: HEAT REDISTRIBUTION AND ENERGY DISSIPATION , 2012, 1201.5391.
[5] John Aitchison,et al. The Statistical Analysis of Compositional Data , 1986 .
[6] T. Guillot,et al. A Nongray Theory of Extrasolar Giant Planets and Brown Dwarfs , 1997, astro-ph/9705201.
[7] David Charbonneau,et al. The 3.6-8.0 μm Broadband Emission Spectrum of HD 209458b: Evidence for an Atmospheric Temperature Inversion , 2007, 0709.3984.
[8] Y. Yung,et al. Atmospheric Radiation: Theoretical Basis , 1989 .
[9] David Charbonneau,et al. ATMOSPHERIC CIRCULATION OF HOT JUPITERS: COUPLED RADIATIVE-DYNAMICAL GENERAL CIRCULATION MODEL SIMULATIONS OF HD 189733b and HD 209458b , 2008, 0809.2089.
[10] S. Shen,et al. The statistical analysis of compositional data , 1983 .
[11] S. Seager,et al. A TEMPERATURE AND ABUNDANCE RETRIEVAL METHOD FOR EXOPLANET ATMOSPHERES , 2009, 0910.1347.
[12] L. J. Richardson,et al. On the Dayside Thermal Emission of Hot Jupiters , 2005 .
[13] Princeton,et al. Theoretical Transmission Spectra during Extrasolar Giant Planet Transits , 1999, astro-ph/9912241.
[14] M. R. Line,et al. INFORMATION CONTENT OF EXOPLANETARY TRANSIT SPECTRA: AN INITIAL LOOK , 2011, 1111.2612.
[15] J. Burns. Comets in the Post-Halley era , 1990 .
[16] I. Hubeny,et al. Theoretical Spectra and Light Curves of Close-in Extrasolar Giant Planets and Comparison with Data , 2007, 0709.4080.
[17] Norman Murray,et al. BROADBAND TRANSMISSION SPECTROSCOPY OF THE SUPER-EARTH GJ 1214b SUGGESTS A LOW MEAN MOLECULAR WEIGHT ATMOSPHERE , 2011, 1104.0011.
[18] Mark Clampin,et al. INFRARED TRANSMISSION SPECTROSCOPY OF THE EXOPLANETS HD 209458b AND XO-1b USING THE WIDE FIELD CAMERA-3 ON THE HUBBLE SPACE TELESCOPE , 2013, 1302.1141.
[19] Patrick G. J. Irwin,et al. Optimal estimation retrievals of the atmospheric structure and composition of HD 189733b from secondary eclipse spectroscopy , 2011, 1110.2934.
[20] B. Fegley,et al. The planetary scientist's companion / Katharina Lodders, Bruce Fegley. , 1998 .
[21] D. Sasselov,et al. THE ATMOSPHERIC SIGNATURES OF SUPER-EARTHS: HOW TO DISTINGUISH BETWEEN HYDROGEN-RICH AND HYDROGEN-POOR ATMOSPHERES , 2008, 0808.1902.
[22] T. Brown. Transmission Spectra as Diagnostics of Extrasolar Giant Planet Atmospheres , 2001, astro-ph/0101307.
[23] P. Gregory. Bayesian Logical Data Analysis for the Physical Sciences: A Comparative Approach with Mathematica® Support , 2005 .
[24] S. Ravi. Bayesian Logical Data Analysis for the Physical Sciences: a Comparative Approach with Mathematica® Support , 2007 .
[25] J. Fortney,et al. THE FLAT TRANSMISSION SPECTRUM OF THE SUPER-EARTH GJ1214b FROM WIDE FIELD CAMERA 3 ON THE HUBBLE SPACE TELESCOPE , 2011, 1111.5621.
[26] Sara Seager,et al. THE OPTICAL AND NEAR-INFRARED TRANSMISSION SPECTRUM OF THE SUPER-EARTH GJ 1214b: FURTHER EVIDENCE FOR A METAL-RICH ATMOSPHERE , 2011, 1109.0582.
[27] Bruce Fegley,et al. The Planetary Scientist's Companion , 1998 .
[28] R. Gilliland,et al. Detection of an Extrasolar Planet Atmosphere , 2001, astro-ph/0111544.
[29] G. Mateu-Figueras,et al. Compositional Data Analysis in the Geosciences: From Theory to Practice , 2006 .
[30] Nikku Madhusudhan,et al. CARBON-RICH GIANT PLANETS: ATMOSPHERIC CHEMISTRY, THERMAL INVERSIONS, SPECTRA, AND FORMATION CONDITIONS , 2011, 1109.3183.