Hot nights on extrasolar planets: mid-infrared phase variations of hot Jupiters
نویسندگان
چکیده
We present results from Spitzer Space Telescope observations of the mid-infrared phase variations of three short-period extrasolar planetary systems: HD 209458, HD 179949 and 51 Peg.We gathered Infrared Array Camera (IRAC) images in multiple wavebands (3.6 μm or 4.5 μm, and 8 μm) at eight phases of each planet’s orbit. We find the uncertainty in relative photometry from one epoch to the next to be significantly larger than the photon counting error at 3.6 μm and 4.5 μm. We are able to place 2σ upper limits of only ∼ 2% on the phase variations at these wavelengths. At 8 μm the epoch-to-epoch systematic uncertainty is comparable to the photon counting noise and we detect a phase function for HD 179949 which is in phase with the planet’s orbit and with a relative peak-to-trough amplitude of 0.00141(33). Assuming that HD 179949b has a radius RJ < Rp < 1.2RJ , it must recirculate less than 21% of incident stellar energy to its night side at the 1σ level (less than 26% at the 2σ level, where 50% signifies full recirculation). If the planet has a small Bond albedo, it must have a mass less than 2.4MJ (1σ). We do not detect phase variations for the other two systems but we do place the following 2σ upper limits: 0.0007 for 51 Peg, and 0.0015 for HD 209458. Due to its edge-on configuration, the upper limit for HD 209458 translates, with appropriate assumptions about Bond albedo, into a lower limit on the recirculation occuring in the planet’s atmosphere. HD 209458b must recirculate at least 32% of incident stellar energy to its night side, at the 1σ level (at least 16% at the 2σ level), which is consistent with other constraints on recirculation from the depth of secondary eclipse depth at 8 μm and the low optical albedo. These data indicate that different Hot Jupiter planets may experience different recirculation efficiencies.
منابع مشابه
Hot Nights on Extrasolar Planets: Mid-IR Phase Variations of Hot Jupiters
We present results from Spitzer Space Telescope observations of the mid-infrared phase variations of three short-period extrasolar planetary systems: HD 209458, HD 179949 and 51 Peg.We gathered Infrared Array Camera (IRAC) images in multiple wavebands (3.6 μm or 4.5 μm, and 8 μm) at eight phases of each planet’s orbit. We find the uncertainty in relative photometry from one epoch to the next to...
متن کاملInfrared Transmission Spectra for Extrasolar Giant Planets
Among the hot Jupiters known to date that transit their parent stars, the two best candidates to be observed with transmission spectroscopy in the mid-infrared (MIR) are HD 189733b and HD 209458b, due to their combined characteristics of planetary density, orbital parameters, and parent star distance and brightness. Here we simulate transmission spectra of these two planets during their primary...
متن کاملThree-dimensional Atmospheric Circulation of Warm and Hot Jupiters: Effects of Orbital Distance, Rotation Period, and Nonsynchronous Rotation
Efforts to characterize extrasolar giant planet (EGP) atmospheres have so far emphasized planets within 0.05AU of their stars. Despite this focus, known EGPs populate a continuum of orbital separations from canonical hot Jupiter values (0.03–0.05 AU) out to 1 AU and beyond. Unlike typical hot Jupiters, these more distant EGPs will not generally be synchronously rotating. In anticipation of obse...
متن کاملThe Formation and Habitability of Terrestrial Planets in the Presence of Hot Jupiters
‘Hot jupiters,’ giant planets with orbits very close to their parent stars, are thought to form farther away and migrate inward via interactions with a massive gas disk. If a giant planet forms and migrates quickly, the planetesimal population has time to re-generate in the lifetime of the disk and terrestrial planets may form (Armitage 2003). We present results of simulations of terrestrial pl...
متن کاملExoplanet Atmospheres and Photochemistry
Over 150 extrasolar planets are known to orbit sun-like stars. A growing number of them (9 to date) are transiting “hot Jupiters” whose physical characteristics can be measured. Atmospheres of two of these planets have already been detected. We summarize the atmosphere detections and useful upper limits, focusing on the MOST albedo upper limit and H exosphere detection for HD209458b as the most...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2007