Direct imaging of exoplanets in the habitable zone with adaptive optics
Abstract
One of the primary goals of exoplanet science is to find and characterize habitable planets, and direct imaging will play a key role in this effort. Though imaging a true Earth analog is likely out of reach from the ground, the coming generation of giant telescopes will find and characterize many planets in and near the habitable zones (HZs) of nearby stars. Radial velocity and transit searches indicate that such planets are common, but imaging them will require achieving extreme contrasts at very small angular separations, posing many challenges for adaptive optics (AO) system design. Giant planets in the HZ may even be within reach with the latest generation of high-contrast imagers for a handful of very nearby stars. Here we will review the definition of the HZ, and the characteristics of detectable planets there. We then review some of the ways that direct imaging in the HZ will be different from the typical exoplanet imaging survey today. Finally, we present preliminary results from our observations of the HZ of {\alpha} Centauri A with the Magellan AO system's VisAO and Clio2 cameras.
Keywords
Cite
@article{arxiv.1407.5099,
title = {Direct imaging of exoplanets in the habitable zone with adaptive optics},
author = {Jared R. Males and Laird M. Close and Olivier Guyon and Katie M. Morzinski and Alfio Puglisi and Philip Hinz and Katherine B. Follette and John D. Monnier and Volker Tolls and Timothy J. Rodigas and Alycia Weinberger and Alan Boss and Derek Kopon and Ya-lin Wu and Simone Esposito and Armando Riccardi and Marco Xompero and Runa Briguglio and Enrico Pinna},
journal= {arXiv preprint arXiv:1407.5099},
year = {2015}
}
Comments
13 pages, 7 figures, to appear in Proc. SPIE 9148