HAT-P-26b: A Low-Density Neptune-Mass Planet Transiting a K Star
Abstract
We report the discovery of HAT-P-26b, a transiting extrasolar planet orbiting the moderately bright V=11.744 K1 dwarf star GSC 0320-01027, with a period P = 4.234516 +- 0.000015 d, transit epoch Tc = 2455304.65122 +- 0.00035 (BJD), and transit duration 0.1023 +- 0.0010 d. The host star has a mass of 0.82 +- 0.03 Msun, radius of 0.79 + 0.10 - 0.04 Rsun, effective temperature 5079 +- 88 K, and metallicity [Fe/H] = -0.04 +- 0.08. The planetary companion has a mass of 0.059 +- 0.007 MJ, and radius of 0.565 + 0.072 - 0.032 RJ yielding a mean density of 0.40 +- 0.10 g cm-3. HAT-P-26b is the fourth Neptune-mass transiting planet discovered to date. It has a mass that is comparable to those of Neptune and Uranus, and slightly smaller than those of the other transiting Super-Neptunes, but a radius that is ~65% larger than those of Neptune and Uranus, and also larger than those of the other transiting Super-Neptunes. HAT-P-26b is consistent with theoretical models of an irradiated Neptune-mass planet with a 10 Mearth heavy element core that comprises >~ 50% of its mass with the remainder contained in a significant hydrogen-helium envelope, though the exact composition is uncertain as there are significant differences between various theoretical models at the Neptune-mass regime. The equatorial declination of the star makes it easily accessible to both Northern and Southern ground-based facilities for follow-up observations.
Keywords
Cite
@article{arxiv.1010.1008,
title = {HAT-P-26b: A Low-Density Neptune-Mass Planet Transiting a K Star},
author = {J. D. Hartman and G. Á. Bakos and D. M. Kipping and G. Torres and G. Kovács and R. W. Noyes and D. W. Latham and A. W. Howard and D. A. Fischer and J. A. Johnson and G. W. Marcy and H. Isaacson and S. N. Quinn and L. A. Buchhave and B. Béky and D. D. Sasselov and R. P. Stefanik and G. A. Esquerdo and M. Everett and G. Perumpilly and J. Lázár and I. Papp and P. Sári},
journal= {arXiv preprint arXiv:1010.1008},
year = {2015}
}
Comments
16 pages, 9 figures, 5 tables, submitted to ApJ