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首页> 外文期刊>Astronomy and astrophysics >A planetary system with gas giants and super-Earths around the nearby M dwarf GJ?676A - Optimizing data analysis techniques for the detection of multi-planetary systems
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A planetary system with gas giants and super-Earths around the nearby M dwarf GJ?676A - Optimizing data analysis techniques for the detection of multi-planetary systems

机译:一个在附近的M矮星GJ?676A附近有气体巨人和超地球的行星系统-用于检测多行星系统的优化数据分析技术

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Context. Several M dwarfs are targets of systematical monitoring in searches for Doppler signals caused by low-mass exoplanet companions. As a result, an emerging population of high-multiplicity planetary systems around low-mass stars are being detected as well. Aims. We optimize classic data analysis methods and develop new ones to enhance the sensitivity towards lower amplitude planets in high-multiplicity systems. We apply these methods to the public HARPS observations of GJ?676A, a nearby and relatively quiet M?dwarf with one reported gas giant companion. Methods. We rederived Doppler measurements from public HARPS spectra using the recently developed template matching method (HARPS-TERRA software). We used refined versions of periodograms to assess the presence of additional low-mass companions. We also analysed the same dataset with Bayesian statistics tools and compared the performance of both approaches. Results. We confirm the already reported massive gas giant candidate and a long period trend in the Doppler measurements. In addition to that, we find very secure evidence in favour of two new candidates in close-in orbits and masses in the super-Earth mass regime. Also, the increased time-span of the observations allows the detection of curvature in the long-period trend. suggesting the presence of a massive outer companion whose nature is still unclear. Conclusions. Despite the increased sensitivity of our new periodogram tools, we find that Bayesian methods are significantly more sensitive and reliable in the early detection of candidate signals, but more work is needed to quantify their robustness against false positives. While hardware development is important in increasing the Doppler precision, development of data analysis techniques can help to reveal new results from existing data sets with significantly fewer resources. This new system holds the record of minimum-mass range (from Msini?~?4.5???M?⊕? to?5???Mjup) and period range (from?P?~?3.6?days to more than 10?years). Although all planet candidates are substantially more massive, it is the first exoplanetary system with a general architecture similar to our solar system. GJ?676A can be happily added to the family of high-multiplicity planetary systems around M dwarfs.
机译:上下文。几个M型矮人是搜寻低质量系外行星同伴引起的多普勒信号时系统监视的目标。结果,还发现了围绕低质量恒星的高多样性行星系统的新兴群体。目的我们优化了经典的数据分析方法,并开发了新的方法来增强高多重性系统对低振幅行星的敏感性。我们将这些方法应用于GJ?676A的公开HARPS观测,GJ?676A是附近和相对安静的M?dwarf,有一个据报道的天然气巨星伴侣。方法。我们使用最近开发的模板匹配方法(HARPS-TERRA软件)从公共HARPS光谱中重新获得了多普勒测量。我们使用周期图的精炼版本来评估其他低质量同伴的存在。我们还使用贝叶斯统计工具分析了相同的数据集,并比较了两种方法的性能。结果。我们确认已经报告的大规模天然气巨人候选者以及多普勒测量中的长期趋势。除此之外,我们发现非常有力的证据表明,在超地球质量体制中,有两个轨道和质量接近的新候选人。同样,观察时间跨度的增加允许检测长期趋势中的曲率。暗示存在性质尚不明确的巨大外部伴侣。结论。尽管我们新的周期图工具的灵敏度有所提高,但我们发现贝叶斯方法在早期检测候选信号方面更加灵敏和可靠,但是需要更多的工作来量化其对假阳性的鲁棒性。虽然硬件开发对于提高多普勒精度很重要,但是数据分析技术的开发可以帮助以更少的资源揭示现有数据集的新结果。这个新系统记录了最小质量范围(从Msini?〜?4.5 ??? M ???到?5 ??? Mjup)和周期范围(从?P?〜?3.6?天到超过10天)的记录。 ?年份)。尽管所有候选行星的质量都大大增加,但这是第一个具有类似于我们的太阳系一般结构的系外行星系统。 GJ?676A可以很高兴地添加到M矮星周围的高多样性行星系统家族中。

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