论文标题
KMT-2017-BLG-0673LB和KMT-2019-BLG-0414LB:在KMTNET调查的外围场中检测到的两个微透明行星
KMT-2017-BLG-0673Lb and KMT-2019-BLG-0414Lb: Two microlensing planets detected in peripheral fields of KMTNet survey
论文作者
论文摘要
我们研究了2017--2019季节在周围银河隆起场中收集的微透明数据,目的是在相对稀疏的覆盖范围内观察到的微透镜光曲线中找到行星信号。首先,我们通过视觉检查所有非磁场事件的视觉检查,在镜头光曲线中排列出弱短期异常的镜头事件,然后测试对异常的各种解释。从此过程中,我们发现了两个以前未知的候选行星镜头事件KMT-2017-BLG-0673和KMT-2019-BLG-0414。发现KMT-2017-BLG-0673的行星信号是由源交叉在行星诱导的苛性碱上产生的,但由于信号的覆盖率稀疏,因此以前被错过。另一方面,KMT-2019-BLG-0414的行星信号是没有苛性横断的,并且由于信号的弱点而遗漏了它。我们确定了KMT-2017-BLG-0673的独特行星解决方案。但是,对于KMT-2019-BLG-0414,我们确定了两对行星溶液,对于每种行星溶液,它们都由近距离退化造成两种溶液,而二元源溶液则略有偏爱,其中单晶状体重力质量重力放大了一个快速的binary binary binary binary compans compans compandion(xallararap)(Xallararap)。从贝叶斯分析中,估计kmt-2017-blg-0673lb行星的质量为$ 3.7^{+2.2} _ { - 2.1} 〜m _ {\ rm j} $ $ 0.63^{+0.37} _ { - 0.35} 〜m_ \ odot $。在KMT-2010-BLG-0414L的行星解释下,一颗星星,质量为$ 0.74^{+0.43} _ { - 0.38} 〜M_ \ odot $ hosts $ hosts theplant $ \ sim $ \ sim 3.2 $ - 3.2 $ - 3.6〜 $ m _ _ _ _ _ _ _ {\ rm j} $依赖解决方案。我们通过30〜M类望远镜对KMT-2019-BLG-0414的行星 - Xallarap变性的分辨率可能解决。
We investigate the microlensing data collected during the 2017--2019 seasons in the peripheral Galactic bulge fields with the aim of finding planetary signals in microlensing light curves observed with relatively sparse coverage. We first sort out lensing events with weak short-term anomalies in the lensing light curves from the visual inspection of all non-prime-field events, and then test various interpretations of the anomalies. From this procedure, we find two previously unidentified candidate planetary lensing events KMT-2017-BLG-0673 and KMT-2019-BLG-0414. It is found that the planetary signal of KMT-2017-BLG-0673 was produced by the source crossing over a planet-induced caustic, but it was previously missed because of the sparse coverage of the signal. On the other hand, the possibly planetary signal of KMT-2019-BLG-0414 was generated without caustic crossing, and it was previously missed due to the weakness of the signal. We identify a unique planetary solution for KMT-2017-BLG-0673. However, for KMT-2019-BLG-0414, we identify two pairs of planetary solutions, for each of which there are two solutions caused by the close-wide degeneracy, and a slightly less favored binary-source solution, in which a single lens mass gravitationally magnified a rapidly orbiting binary source with a faint companion (xallarap). From Bayesian analyses, it is estimated that the planet KMT-2017-BLG-0673Lb has a mass of $3.7^{+2.2}_{-2.1}~M_{\rm J}$, and it is orbiting a late K-type host star with a mass of $0.63^{+0.37}_{-0.35}~M_\odot$. Under the planetary interpretation of KMT-2010-BLG-0414L, a star with a mass of $0.74^{+0.43}_{-0.38}~M_\odot$ hosts a planet with a mass of $\sim 3.2$--3.6~$M_{\rm J}$ depending on the solution. We discuss the possible resolution of the planet-xallarap degeneracy of KMT-2019-BLG-0414 by future adaptive-optics observations on 30~m class telescopes.