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The discoveries of WASP-91b, WASP-105b and WASP-107b: Two warm Jupiters and a planet in the transition region between ice giants and gas giants

机译:WASP-91b,WASP-105b和WASP-107b的发现:两个温暖的木星和一个位于冰巨人和天然气巨人之间过渡区域的行星

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摘要

We report the discoveries of three transiting exoplanets. WASP-91b is a warm Jupiter (1.34 M[SUB]Jup[/SUB], 1.03 R[SUB]Jup[/SUB]) in a 2.8-day orbit around a metal-rich K3 star. WASP-105b is a warm Jupiter (1.8 M[SUB]Jup[/SUB], 0.96 R[SUB]Jup[/SUB]) in a 7.9-day orbit around a metal-rich K2 star. WASP-107b is a warm super-Neptune/sub-Saturn (0.12 M[SUB]Jup[/SUB], 0.94 R[SUB]Jup[/SUB]) in a 5.7-day orbit around a solar-metallicity K6 star. Considering that giant planets seem to be more common around stars of higher metallicity and stars of higher mass, it is notable that the hosts are all metal-rich, late-type stars. With orbital separations that place both WASP-105b and WASP-107b in the weak-tide regime, measurements of the alignment between the planets' orbital axes and their stars' spin axes may help us to understand the inward migration of short-period, giant planets. The mass of WASP-107b (2.2 M[SUB]Nep[/SUB], 0.40 M[SUB]Sat[/SUB]) places it in the transition region between the ice giants and gas giants of the Solar System. Its radius of 0.94 R[SUB]Jup[/SUB] suggests that it is a low-mass gas giant with a H/He-dominated composition. The planet thus sets a lower limit of 2.2 M[SUB]Nep[/SUB] on the planetary mass above which large gaseous envelopes can be accreted and retained by proto-planets on their way to becoming gas giants. We may discover whether WASP-107b more closely resembles an ice giant or a gas giant by measuring its atmospheric metallicity via transmission spectroscopy, for which WASP-107b is a very good target. Based on observations made with: the WASP-South photometric survey instrument, the 0.6-m TRAPPIST robotic imager, and the EulerCam camera and the CORALIE spectrograph mounted on the 1.2-m Euler-Swiss telescope.The photometric time-series and radial-velocity data used in this work are only available at the CDS via anonymous ftp to () or via
机译:我们报告了三个过境系外行星的发现。 WASP-91b是一颗温暖的木星(1.34 M [SUB] Jup [/ SUB],1.03 R [SUB] Jup [/ SUB]),在围绕金属的K3恒星周围2.8天的轨道中。 WASP-105b是一颗温暖的木星(1.8 M [J] [J] [/ SUB],0.96 R [J] [J] [/ SUB]),绕着富含金属的K2星绕着7.9天的轨道运行。 WASP-107b是一颗围绕太阳金属K6恒星的5.7天轨道中的超暖海王星/土星(0.12 M [SUB] Jup [/ SUB],0.94 R [SUB] Jup [/ SUB])。考虑到巨型行星似乎在金属性较高的恒星和质量较高的恒星周围更为常见,因此值得注意的是,这些宿主都是富含金属的晚型恒星。通过将WASP-105b和WASP-107b都置于弱潮状态的轨道分离,测量行星的轨道轴与恒星的自旋轴之间的对准可能有助于我们了解短周期巨星的向内迁移行星。 WASP-107b的质量(2.2 M [SUB] Nep [/ SUB],0.40 M [SUB] Sat [/ SUB])将其放置在太阳系的冰巨人和天然气巨人之间的过渡区域。其半径为0.94 R [SUB] Jup [/ SUB],表明它是具有H / He为主成分的低质量气体巨人。因此,该行星对行星质量设定了一个下限2.2 M [SUB] Nep [/ SUB],在该上限之上,原行星在成为气体巨人的过程中会吸收并保留较大的气态包膜。通过透射光谱法测量WASP-107b的大气金属性,我们可能会发现WASP-107b是更类似于冰巨人还是天然气巨人,WASP-107b是非常好的目标。基于WASP-South光度测量仪器,0.6米的TRAPPIST机器人成像仪以及安装在1.2米的Euler-Swiss望远镜上的EulerCam相机和CORALIE光谱仪进行的观测,这些测光的时间序列和径向速度本工作中使用的数据仅可通过CDS通过匿名ftp到()或通过

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