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MCMCI: A code to fully characterise an exoplanetary system ?

机译:McMCI:要完全表征ExopAnetary System <相关对象对象类型=“tablecds”source-id =“http:// cdsarc.u-strasbg.fr/viz-bin/cat/j/a anyla/635/a6“source-id-type =”url“/>

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Context. Useful information can be retrieved by analysing the transit light curve of a planet-hosting star or induced radial velocity oscillations. However, inferring the physical parameters of the planet, such as mass, size, and semi-major axis, requires preliminary knowledge of some parameters of the host star, especially its mass or radius, which are generally inferred through theoretical evolutionary models. Aims. We seek to present and test a whole algorithm devoted to the complete characterisation of an exoplanetary system thanks to the global analysis of photometric or radial velocity time series combined with observational stellar parameters derived either from spectroscopy or photometry. Methods. We developed an integrated tool called MCMCI. This tool combines the Markov chain Monte Carlo (MCMC) approach of analysing photometric or radial velocity time series with a proper interpolation within stellar evolutionary isochrones and tracks, known as isochrone placement, to be performed at each chain step, to retrieve stellar theoretical parameters such as age, mass, and radius. Results. We tested the MCMCI on the HD 219134 multi-planetary system hosting two transiting rocky super Earths and on WASP-4, which hosts a bloated hot Jupiter. Even considering different input approaches, a final convergence was reached within the code, we found good agreement with the results already stated in the literature and we obtained more precise output parameters, especially concerning planetary masses. Conclusions. The MCMCI tool offers the opportunity to perform an integrated analysis of an exoplanetary system without splitting it into the preliminary stellar characterisation through theoretical models. Rather this approach favours a close interaction between light curve analysis and isochrones, so that the parameters recovered at each step of the MCMC enter as inputs for purposes of isochrone placement.
机译:语境。可以通过分析行星托管星的过境光曲线或诱导径向速度振荡来检索有用的信息。然而,推断出地球的物理参数,例如质量,尺寸和半主轴,需要初步了解宿主恒星的一些参数,特别是其质量或半径,这通常通过理论进化模型推断。目标。由于对光度或径向速度时间序列的全局分析结合光谱或光度测量,因此寻求展示和测试专门讨论外部系统的完整表征的整个算法。方法。我们开发了一个名为MCMCI的集成工具。该工具结合了Markov链蒙特卡罗(MCMC)分析光度或径向速度时间序列的方法,其在恒星进化等色剂和轨道内具有适当的插值,称为同种种子放置,以在每个链步骤进行,以检索恒星理论参数作为年龄,质量和半径。结果。我们在HD 219134多行星系统上测试了MCMCI,托管了两个过渡岩石超地球和WASP-4,托管了臃肿的热木星。即使考虑到不同的输入方法,何地达成了最终收敛,我们发现与文献中已陈述的结果达成了良好的一致性,我们获得了更精确的输出参数,特别是关于行星群体。结论。 MCMCI工具提供了对外部工业系统进行综合分析的机会,而不通过理论模型将其分成初步恒星表征。相反,这种方法有利于光曲线分析和等荷松之间的密切相互作用,使得在MCMC的每个步骤中恢复的参数作为异种放置的目的进入。

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