D. Modirrousta-Galian, B. Stelzer, E. Magaudda, J. Maldonado, M. Gudel, J. Sanz-Forcada, B. Edwards, G. Micela
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引用次数: 4

摘要

在本文中,我们对附近的M矮星gj357进行了深入的x射线观测,并利用它来限制其行星gj357 b的大气演化。我们还分析了gj357恒星参数的系统误差,以了解它们如何影响感知到的行星特性。我们通过比较最近{\emxmm -牛顿}观测{($\log{L_{\rm x}}\,{\rm [erg/s]} = 25.73$)得出的其主恒星的x射线亮度与$L_{\rm x} -$ M矮星的年龄关系来估计GJ 357 b的年龄。我们发现gj357是迄今为止测量到的M矮星中x射线活动水平最低的一个,我们把它的年龄下限定在$5$ \,Gyr。}利用这一年龄限制,我们对原始大气储层进行了反向重建。此外,通过考虑恒星参数的系统误差,我们发现了一系列可能的行星质量、半径和密度。通过对gj357 b辐照历史的回溯重建,我们发现其初始原始大气质量的上限为$\sim \rm 38M_{\oplus}$。一个比这大得多的初始大气储层可能在x射线和紫外线照射历史中幸存下来,因此与目前提出的大地成分的观测结果不一致。尽管目前不太可能存在原始包层,但火山活动和气体释放可能促成了二次大气的形成。在这一假设下,我们提出了人们可能期望的gj357 b的三种不同的合成红外光谱,包括$100\%~\rm CO_{2}$, $100\%~\rm SO_{2}$和$75\%~ \rm N_{2}$, $24\%~\rm CO_{2}$和$1\%~\rm H_{2}O$。
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GJ 357 b
In this paper we present a deep X-ray observation of the nearby M dwarf GJ 357 and use it to put constraints on the atmospheric evolution of its planet, GJ 357 b. We also analyse the systematic errors in the stellar parameters of GJ 357 in order to see how they affect the perceived planetary properties. We estimate the age of GJ 357 b by comparing the observed X-ray luminosity of its host star, derived from a recent {\em XMM-Newton} observation {($\log{L_{\rm x}}\,{\rm [erg/s]} = 25.73$), with $L_{\rm x} -$ age relations for M dwarfs. We find that GJ 357 presents one of the lowest X-ray activity levels ever measured for an M dwarf, and we put a lower limit on its age of $5$\,Gyr.} Using this age limit, we perform a backwards reconstruction of the original primordial atmospheric reservoir. Furthermore, by considering the systematic errors in the stellar parameters, we find a range of possible planetary masses, radii, and densities. From the backwards reconstruction of GJ 357 b's irradiation history we find that the upper limit of its initial primordial atmospheric mass is $\sim \rm 38M_{\oplus}$. An initial atmospheric reservoir significantly larger than this may have survived through the X-ray and ultraviolet irradiation history, hence being inconsistent with current observations that suggest a telluric composition. In spite of the unlikelihood of a currently existing primordial envelope, volcanism and outgassing may have contributed to a secondary atmosphere. Under this assumption, we present three different synthetic infrared spectra for GJ 357 b that one might expect, consisting of $100\%~\rm CO_{2}$, $100\%~\rm SO_{2}$, and $75\%~ \rm N_{2}$, $24\%~\rm CO_{2}$ and $1\%~\rm H_{2}O$.
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