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首页> 外文期刊>Astronomy and astrophysics >VLT/SPHERE robust astrometry of the HR8799 planets at milliarcsecond-level accuracy - Orbital architecture analysis with PyAstrOFit
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VLT/SPHERE robust astrometry of the HR8799 planets at milliarcsecond-level accuracy - Orbital architecture analysis with PyAstrOFit

机译:HR8799的VLT /球体鲁棒天线在玛基二级精度 - 轨道架构分析与Pyastrofit

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Context. HR8799 is orbited by at least four giant planets, making it a prime target for the recently commissioned Spectro-Polarimetric High-contrast Exoplanet REsearch (VLT/SPHERE). As such, it was observed on five consecutive nights during the SPHERE science verification in December 2014. Aims. We aim to take full advantage of the SPHERE capabilities to derive accurate astrometric measurements based on H -band images acquired with the Infra-Red Dual-band Imaging and Spectroscopy (IRDIS) subsystem, and to explore the ultimate astrometric performance of SPHERE in this observing mode. We also aim to present a detailed analysis of the orbital parameters for the four planets. Methods. We performed thorough post-processing of the IRDIS images with the Vortex Imaging Processing (VIP) package to derive a robust astrometric measurement for the four planets. This includes the identification and careful evaluation of the different contributions to the error budget, including systematic errors. Combining our astrometric measurements with the ones previously published in the literature, we constrain the orbital parameters of the four planets using PyAstrOFit, our new open-source python package dedicated to orbital fitting using Bayesian inference with Monte-Carlo Markov Chain sampling. Results. We report the astrometric positions for epoch 2014.93 with an accuracy down to 2.0 mas, mainly limited by the astrometric calibration of IRDIS. For each planet, we derive the posterior probability density functions for the six Keplerian elements and identify sets of highly probable orbits. For planet d, there is clear evidence for nonzero eccentricity ( e ~ 0.35) , without completely excluding solutions with smaller eccentricities. The three other planets are consistent with circular orbits, although their probability distributions spread beyond e = 0.2 , and show a peak at e ? 0.1 for planet e. The four planets have consistent inclinations of approximately 30° with respect to the sky plane, but the confidence intervals for the longitude of the ascending node are disjointed for planets b and c, and we find tentative evidence for non-coplanarity between planets b and c at the 2 σ level.
机译:语境。 HR8799由至少四个巨大的行星进行轨道,使其成为最近委托的光谱 - 偏振高造影率研究(VLT / SPERE)的主要目标。因此,在2014年12月在球体科学核查期间连续五个晚上观察到。目标。我们的目标是基于用红外线双频带成像和光谱(IRDIS)子系统获取的H沟图像,充分利用球体能力来得出精确的星形测量,并探讨该观察中球体的最终的星形性能模式。我们还旨在详细分析四个星球的轨道参数。方法。我们通过涡流成像处理(VIP)封装进行了彻底处理IRDIS图像,以导出四个行星的稳健的天体测量。这包括对错误预算的不同贡献的标识和仔细评估,包括系统错误。将我们的星形测量与先前发表在文献中的星形测量,我们使用Pyastrofit限制了四个行星的轨道参数,我们的新开源Python封装致力于使用Bayesian推论与Monte-Carlo Markov链采样采样。结果。我们报告了EPOCH 2014.93的星形位置,精度下降到2.0 MAS,主要受Irdis的天体计量校准的限制。对于每个星球,我们导出了六个开普勒元素的后验概率密度函数,并识别高度可能的轨道集。对于行星D,有明确的证据表明非零偏心(E〜0.35),而无需完全排除具有较小偏心的解决方案。其他三个行星与圆形轨道一致,尽管它们的概率分布扩展超过E = 0.2,并且在e上显示峰值? 0.1的行星e。四个行星相对于天空平面具有约30°的一致倾斜,但上升节点的经度的置信区间对行星B和C脱节,并且我们在行星B和C之间找到了非共面的暂定证据在2σ级别。

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