SIMBAD references

2003ApJ...595..429J - Astrophys. J., 595, 429-445 (2003/September-3)

Detecting reflected light from close-in extrasolar giant planets with the Kepler photometer.

JENKINS J.M. and DOYLE L.R.

Abstract (from CDS):

NASA's Kepler mission promises to detect transiting Earth-sized planets in the habitable zones of solar-like stars. In addition, it will be poised to detect the reflected light component from close-in extrasolar giant planets (CEGPs) similar to 51 Peg b. Here we use the Dual Irradiance Absolute Radiometer aboard the Solar Heliospheric Observatory time series along with models for the reflected light signatures of CEGPs to evaluate Kepler's ability to detect such planets. We examine the detectability as a function of stellar brightness, stellar rotation period, planetary orbital inclination angle, and planetary orbital period and then estimate the total number of CEGPs that Kepler will detect over its four-year mission. The analysis shows that intrinsic stellar variability of solar-like stars is a major obstacle to detecting the reflected light from CEGPs. Monte Carlo trials are used to estimate the detection threshold required to limit the total number of expected false alarms to no more than one for a survey of 100,000 stellar light curves. Kepler will likely detect 100-760 51 Peg b-like planets by reflected light with orbital periods up to 7 days.

Abstract Copyright:

Journal keyword(s): Methods: Data Analysis - Stars: Planetary Systems - Techniques: Photometric

Simbad objects: 6

goto Full paper

goto View the references in ADS

To bookmark this query, right click on this link: simbad:2003ApJ...595..429J and select 'bookmark this link' or equivalent in the popup menu