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KELT-12b: A P ~ 5 day, Highly Inflated Hot Jupiter Transiting a Mildly Evolved Hot Star

机译:KELT-12b:P〜5天,高度膨胀的木星飞越了一颗缓缓演化的热星

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摘要

We announce the discovery of KELT-12b, a highly inflated Jupiter-mass planet transiting the mildly evolved, V = 10.64 host star TYC 2619-1057-1. We followed up the initial transit signal in the KELT-North survey data with precise ground-based photometry, high-resolution spectroscopy, precise radial velocity measurements, and high-resolution adaptive optics imaging. Our preferred best-fit model indicates that the host star has T_(eff) = 6279 ± 51 K, log g⋆ = 3.89 ± 0.05, [Fe/H] = 0.19^(+0.08)_(-0.09), M* = 1.59^(+0.07)_(-0.09)M⊙, and R* = 2.37 ± 0.17 R⊙. The planetary companion has M_P = 0.95 ± 0.14 M_J, R_P = 1.78^(+0.17)_(-0.16)R_J, log g_P = 2.87^(+0.09)_(-0.10), and density ρ_P = 0.21^(+0.07)_(-0.05) g cm^(−3), making it one of the most inflated giant planets known. Furthermore, for future follow-up, we report a high-precision time of inferior conjunction in BJD_(TDB) of 2,457,083.660459 ± 0.000894 and period of P = 5.0316216 ± 0.000032 days. Despite the relatively large separation of ~0.07 au implied by its ~5.03-day orbital period, KELT-12b receives significant flux of 2.38^(+0.32)_(-0.29) x 10^9 erg s^(−1) cm^(−2) from its host. We compare the radii and insolations of transiting gas giant planets around hot (T_(eff) ⩾ 6250 K) and cool stars, noting that the observed paucity of known transiting giants around hot stars with low insolation is likely due to selection effects. We underscore the significance of long-term ground-based monitoring of hot stars and space-based targeting of hot stars with the Transiting Exoplanet Survey Satellite to search for inflated gas giants in longer-period orbits.
机译:我们宣布发现KELT-12b,这是一颗高度膨胀的木星质量行星,其通过的V = 10.64轻度主星TYC 2619-1057-1。我们通过精确的地面光度法,高分辨率光谱学,精确的径向速度测量和高分辨率自适应光学成像对KELT-North调查数据中的初始传输信号进行了跟踪。我们首选的最佳拟合模型表明,主星的T_(eff)= 6279±51 K,logg⋆= 3.89±0.05,[Fe / H] = 0.19 ^(+ 0.08)_(-0.09),M * = 1.59 ^(+ 0.07)_(-0.09)M⊙,R * = 2.37±0.17R⊙。行星伴星的M_P = 0.95±0.14 M_J,R_P = 1.78 ^(+ 0.17)_(-0.16)R_J,log g_P = 2.87 ^(+ 0.09)_(-0.10),密度ρ_P= 0.21 ^(+ 0.07) )_(-0.05)g cm ^(− 3),使其成为已知的最膨胀的巨型行星之一。此外,为了以后的随访,我们报告了BJD_(TDB)中的次优结伴的高精度时间为2,457,083.660459±0.000894,周期为P = 5.0316216±0.000032天。尽管〜5.03天的轨道周期暗示〜0.07 au相对较大的分离,但KELT-12b的通量为2.38 ^(+ 0.32)_(-0.29)x 10 ^ 9 erg s ^(-1)cm ^ (-2)来自其主机。我们比较了热星(T_(eff)⩾6250 K)和冷恒星周围的过渡气体巨行星的半径和日射量,并注意到观测到的日照量低的热恒星周围的过渡中行星的稀疏性很可能归因于选择效应。我们强调了利用瞬态系外行星调查卫星对热星进行长期地基监测和对热星进行空基瞄准的重要性,该卫星可以搜索更长周期轨道上的膨胀天然气巨人。

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