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HATS-25B THROUGH HATS-30B: A HALF-DOZEN NEW INFLATED TRANSITING HOT JUPITERS from the HATSOUTH SURVEY

Authors :
Espinoza, N
Bayliss, D
Hartman, JD
Bakos, G
Jordán, A
Zhou, G
Mancini, L
Brahm, R
Ciceri, S
Bhatti, W
Csubry, Z
Rabus, M
Penev, K
Bento, J
Val-Borro, MD
Henning, T
Schmidt, B
Suc, V
Wright, DJ
Tinney, CG
Tan, TG
Noyes, R
Espinoza, N
Bayliss, D
Hartman, JD
Bakos, G
Jordán, A
Zhou, G
Mancini, L
Brahm, R
Ciceri, S
Bhatti, W
Csubry, Z
Rabus, M
Penev, K
Bento, J
Val-Borro, MD
Henning, T
Schmidt, B
Suc, V
Wright, DJ
Tinney, CG
Tan, TG
Noyes, R
Publication Year :
2016

Abstract

We report six new inflated hot Jupiters (HATS-25b through HATS-30b) discovered using the HATSouth global network of automated telescopes. The planets orbit stars with V magnitudes in the range of ∼12-14 and have masses in the largely populated 0.5MJ-0.7MJ region of parameter space but span a wide variety of radii, from 1.17RJ to 1.75RJ. HATS-25b, HATS-28b, HATS-29b, and HATS-30b are typical inflated hot Jupiters (RP = 1.17-1.26RJ) orbiting G-type stars in short period (P = 3.2-4.6 days) orbits. However, HATS-26b (Rp = 1.75RJ, P = 3.3024 days) and HATS-27b (Rp = 1.50RJ, P = 4.6370 days) stand out as highly inflated planets orbiting slightly evolved F stars just after and in the turn-off points, respectively, which are among the least dense hot Jupiters, with densities of 0.153 and 0.180 , respectively. All the presented exoplanets but HATS-27b are good targets for future atmospheric characterization studies, while HATS-27b is a prime target for Rossiter - McLaughlin monitoring in order to determine its spin-orbit alignment given the brightness (V = 12.8) and stellar rotational velocity (v sin i ≈ 9.3 km s-1) of the host star. These discoveries significantly increase the number of inflated hot Jupiters known, contributing to our understanding of the mechanism(s) responsible for hot Jupiter inflation.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1048364510
Document Type :
Electronic Resource