S-Type and P-Type Habitability in Stellar Binary Systems: A Comprehensive Approach. II. Elliptical Orbits
arXiv:1409.3796 · doi:10.1088/0004-637X/798/2/101
Abstract
In the first paper of this series, a comprehensive approach has been provided for the study of S-type and P-type habitable regions in stellar binary systems, which was, however, restricted to circular orbits of the stellar components. Fortunately, a modest modification of the method also allows for the consideration of elliptical orbits, which of course entails a much broader range of applicability. This augmented method is presented here, and numerous applications are conveyed. In alignment with Paper I, the selected approach considers a variety of aspects, which comprise the consideration of a joint constraint including orbital stability and a habitable region for a possible system planet through the stellar radiative energy fluxes ("radiative habitable zone"; RHZ). The devised method is based on a combined formalism for the assessment of both S-type and P-type habitability; in particular, mathematical criteria are deduced for which kinds of systems S-type and P-type habitable zones are realized. If the RHZs are truncated by the additional constraint of orbital stability, the notation of ST-type and PT-type habitability applies. In comparison to the circular case, it is found that in systems of higher eccentricity, the range of the RHZs is significantly reduced. Moreover, for a considerable number of models, the orbital stability constraint also reduces the range of S-type and P-type habitability. Nonetheless, S-, P-, ST-, and PT-type habitability is identified for a considerable set of system parameters. The method as presented is utilized for BinHab, an online code available at The University of Texas at Arlington.
44 pages, 9 figures, 11 tables; ApJ, in press
References in corpus (8)
- Habitable Zones Around Main-Sequence Stars: Dependence on Planetary Mass
- Habitable planets around the star Gl 581?
- Strong Dependence of the Inner Edge of the Habitable Zone on Planetary Rotation Rate
- Two Suns in The Sky: Stellar Multiplicity in Exoplanet Systems
- Formation, Habitability, and Detection of Extrasolar Moons
- Misaligned Protoplanetary Disks in a Young Binary System
- Habitability of Earth-type Planets and Moons in the Kepler-16 System
- BinHab: A Numerical Tool for the Calculation of S/P-Type Habitable Zones in Binary Systems