most citedKepler Mission Design, Realized Photometric Performance, and Early Science

1.2k citations · 2.8k across the 6 of their papers we have counts for

collaborators

6 papers

astro-ph.EP2010★ 355 cited

Characteristics of Kepler Planetary Candidates Based on the First Data Set: The Majority are Found to be Neptune-Size and Smaller

William J. Borucki

In the spring of 2009, the Kepler Mission commenced high-precision photometry on nearly 156,000 stars to determine the frequency and characteristics of small exoplanets, conduct a…

astro-ph.EP2010★ 1.2k cited

Kepler Mission Design, Realized Photometric Performance, and Early Science

David G. Koch, William J. Borucki, Gibor Basri +44

The Kepler Mission, launched on Mar 6, 2009 was designed with the explicit capability to detect Earth-size planets in the habitable zone of solar-like stars using the transit photo…

astro-ph.EP2010★ 111 cited

Discovery and Rossiter-McLaughlin Effect of Exoplanet Kepler-8b

Jon M. Jenkins, William J. Borucki, David G. Koch +50

We report the discovery and the Rossiter-McLaughlin effect of Kepler-8b, a transiting planet identified by the NASA Kepler Mission. Kepler photometry and Keck-HIRES radial velociti…

astro-ph.EP2010★ 656 cited

Overview of the Kepler Science Processing Pipeline

Jon M. Jenkins, Douglas A. Caldwell, Hema Chandrasekaran +27

The Kepler Mission Science Operations Center (SOC) performs several critical functions including managing the ~156,000 target stars, associated target tables, science data compress…

astro-ph.EP2010★ 333 cited

Initial Characteristics of Kepler Long Cadence Data For Detecting Transiting Planets

Jon M. Jenkins, Douglas A. Caldwell, Hema Chandrasekaran +15

The Kepler Mission seeks to detect Earth-size planets transiting solar-like stars in its ~115 deg^2 field of view over the course of its 3.5 year primary mission by monitoring the…

astro-ph.EP2010★ 169 cited

Instrument Performance in Kepler's First Months

Douglas A. Caldwell, Jeffery J. Kolodziejczak, Jeffrey E. Van Cleve +16

The Kepler Mission relies on precise differential photometry to detect the 80 parts per million (ppm) signal from an Earth-Sun equivalent transit. Such precision requires superb in…