论文标题

遵循带有泛星际行星的系外行星的曲目:Wendelstein-1b和Wendelstein-2b

Following the TraCS of exoplanets with Pan-Planets: Wendelstein-1b and Wendelstein-2b

论文作者

Obermeier, Christian, Steuer, Jana, Kellermann, Hanna, Saglia, Roberto P., Henning, Thomas, Riffeser, Arno, Hopp, Ulrich, Stefansson, Guðmundur, Cañas, Caleb, Ninan, Joe P., Mahadevan, Suvrath, Isaacson, Howard, Howard, Andrew W., Livingston, John H., Koppenhoefer, Johannes, Bender, Ralf

论文摘要

热木星似乎随着恒星质量的减少而变得稀少。泛星际运输调查的目的是检测此类行星及其频率的统计表征。在这里,我们宣布了该调查中发现的两个行星Wendelstein-1b和Wendelstein-2B的发现和验证,它们是两个短期热木星,它们绕了后期K宿主星。我们通过传统的径向速度测量方法验证了它们,其高分辨率梯形光谱仪(雇用)和可居住区的行星发现器(HPF)仪器,然后通过其Transit Color Signature(TRACS)进行了验证。我们观察到$ 4000-24000 $Angström的波长范围内的目标,并进行了同时进行的多频道拟合,并通过次级日食观察确定了它们的热发射。 Wendelstein-1b is a hot Jupiter with a radius of $1.0314_{-0.0061}^{+0.0061}$ $R_J$ and mass of $0.592_{-0.129}^{+0.165}$ $M_J$, orbiting a K7V dwarf star at a period of $2.66$ d, and has an estimated surface temperature of大约$ 1727 _ { - 90}^{+78} $K。Wendelstein-2b是一款热木星,半径为$ 1.1592 _ { - 0.0210}^{+0.0204} $ $ $ $ $ $ r_j $,质量为$ 0.731 _ { - 0.731 $ _ { - 0.311} $ 0.J. K6V dwarf star at a period of $1.75$ d, and has an estimated surface temperature of about $1852_{-140}^{+120}$ K. With this, we demonstrate that multiband photometry is an effective way of validating transiting exoplanets, in particular for fainter targets since radial velocity (RV) follow-up becomes more and more costly for those targets.

Hot Jupiters seem to get rarer with decreasing stellar mass. The goal of the Pan-Planets transit survey was the detection of such planets and a statistical characterization of their frequency. Here, we announce the discovery and validation of two planets found in that survey, Wendelstein-1b and Wendelstein-2b, which are two short-period hot Jupiters that orbit late K host stars. We validated them both by the traditional method of radial velocity measurements with the HIgh Resolution Echelle Spectrometer (HIRES) and the Habitable-zone Planet Finder (HPF) instruments and then by their Transit Color Signature (TraCS). We observed the targets in the wavelength range of $4000 - 24000$ Angström and performed a simultaneous multiband transit fit and additionally determined their thermal emission via secondary eclipse observations. Wendelstein-1b is a hot Jupiter with a radius of $1.0314_{-0.0061}^{+0.0061}$ $R_J$ and mass of $0.592_{-0.129}^{+0.165}$ $M_J$, orbiting a K7V dwarf star at a period of $2.66$ d, and has an estimated surface temperature of about $1727_{-90}^{+78}$ K. Wendelstein-2b is a hot Jupiter with a radius of $1.1592_{-0.0210}^{+0.0204}$ $R_J$ and a mass of $0.731_{-0.311}^{+0.541}$ $M_J$, orbiting a K6V dwarf star at a period of $1.75$ d, and has an estimated surface temperature of about $1852_{-140}^{+120}$ K. With this, we demonstrate that multiband photometry is an effective way of validating transiting exoplanets, in particular for fainter targets since radial velocity (RV) follow-up becomes more and more costly for those targets.

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