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Two New Long-Period Giant Planets from the McDonald Observatory Planet Search and Two Stars with Long-Period Radial Velocity Signals Related to Stellar Activity Cycles

机译:来自麦当劳天文台行星搜索的两个新的长周期巨型行星和两个与恒星活动周期有关的长周期径向速度信号的恒星

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摘要

We report the detection of two new long-period giant planets orbiting the stars HD 95872 and HD 162004 (ψ^1 Dra B) by the McDonald Observatory planet search. The planet HD 95872b has a minimum mass of 4.6 M_(Jup) and an orbital semimajor axis of 5.2 AU. The giant planet ψ^1 Dra Bb has a minimum mass of 1.5 M_(Jup) and an orbital semimajor axis of 4.4 AU. Both of these planets qualify as Jupiter analogs. These results are based on over one and a half decades of precise radial velocity (RV) measurements collected by our program using the McDonald Observatory Tull Coude spectrograph at the 2.7 m Harlan J. Smith Telescope. In the case of ψ^1 Dra B we also detect a long-term nonlinear trend in our data that indicates the presence of an additional giant planet, similar to the Jupiter–Saturn pair. The primary of the binary star system, ψ^1 Dra A, exhibits a very large amplitude RV variation due to another stellar companion. We detect this additional member using speckle imaging. We also report two cases—HD 10086 and HD 102870 (β Virginis)—of significant RV variation consistent with the presence of a planet, but that are probably caused by stellar activity, rather than reflexive Keplerian motion. These two cases stress the importance of monitoring the magnetic activity level of a target star, as long-term activity cycles can mimic the presence of a Jupiter-analog planet.
机译:我们报告通过麦当劳天文台行星搜索发现了两个新的长周期巨型行星,它们绕着HD 95872和HD 162004(ψ^ 1 Dra B)恒星运行。 HD 95872b行星的最小质量为4.6 M_(Jup),轨道半长轴为5.2 AU。巨型行星^^ 1 Dra Bb的最小质量为1.5 M_(Jup),轨道半长轴为4.4 AU。这两个行星都可以作为木星类似物。这些结果是基于我们的程序使用2.7 m的Harlan J. Smith望远镜上的McDonald天文台Tull Coude光谱仪收集的超过15年的精确径向速度(RV)测量结果得出的。在ψ^ 1 Dra B的情况下,我们还在数据中检测到长期非线性趋势,该趋势表明存在另一个额外的巨型行星,类似于木星-土星对。由于另一个恒星伴星,双星系统的主星ψ^ 1 Dra A表现出非常大的幅度RV变化。我们使用散斑成像检测到此其他成员。我们还报告了两种情况-HD 10086和HD 102870(βVirginis)-RV的显着变化与行星的存在一致,但可能是由于恒星活动而非反射性开普勒运动引起的。这两个案例强调了监视目标恒星的磁活动水平的重要性,因为长期的活动周期可以模仿木星类似行星的存在。

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