HD 209458 b大气中He I三重态吸收的模拟

M. Lamp'on, M. L'opez-Puertas, L. Lara, A. S'anchez-L'opez, M. Salz, S. Czesla, J. Sanz-Forcada, K. Molaverdikhani, F. J. Alonso-Floriano, L. Nortmann, J. Caballero, F. Bauer, E. Pall'e, D. Montes, A. Quirrenbach, E. Nagel, I. Ribas, A. Reiners, P. Amado
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引用次数: 26

摘要

HD 209458b是一颗系外行星,其上层大气正在被吹出,主要是通过测量ly - α吸收来研究的。最近,一些系外行星(包括HD 209458b)在10830埃的He I三重态线吸收的高分辨率测量结果被报道,这为探测逃逸大气层创造了新的机会。我们的目标是更好地了解HD 209458b的大气区域,从那里逃逸。我们建立了HD 209458 b热层的一维球对称流体动力学模型,并结合了He三重态居群的非局域热力学模型。此外,我们还对氦三重线的合成光谱进行了高分辨率辐射转移计算,并将其与实测吸收光谱进行了比较,以获取大气参数信息。我们发现测量的光谱限制了发生在1.2 ~ 1.9Rp范围内的[H]/[H$^{+}$]跃迁高度。氢在海拔高于2.9Rp时几乎完全电离。我们还发现x射线和EUV的吸收发生在1.16 ~ 1.30Rp的有效半径范围内,He三重态的峰值密度发生在1.04 ~ 1.60Rp的高度范围内。此外,平均mmw被限制在0.61-0.73 g/mol区间,热层H/He比应该大于90/10,最有可能约为98/2。我们还提供了质量损失率与温度之间的一对一关系。基于能量限制逸出方法,假设加热效率为0.1-0.2,我们发现质量损失率在(0.42-1.00)$\乘以10^{11}$ g/s范围内,相应的温度范围为7125 ~ 8125K。对测量的He三重态吸收光谱的分析显著地限制了HD 209458b的热层结构,并提高了我们对其逸出大气的认识。
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Modelling the He I triplet absorption at 10 830 Å in the atmosphere of HD 209458 b
HD 209458b is an exoplanet with an upper atmosphere undergoing blow-off escape that has mainly been studied using measurements of the Ly-alpha absorption. Recently, high-resolution measurements of absorption in the He I triplet line at 10830 angstroms of several exoplanets (including HD 209458b) have been reported, creating a new opportunity to probe escaping atmospheres. We aim to better understand the atmospheric regions of HD 209458b from where the escape originates. We developed a 1D hydrodynamic model with spherical symmetry for the HD 209458 b thermosphere coupled with a non-local thermodynamic model for the population of the He triplet state. In addition, we performed high-resolution radiative transfer calculations of synthetic spectra for the He triplet lines and compared them with the measured absorption spectrum in order to retrieve information about the atmospheric parameters. We find that the measured spectrum constrains the [H]/[H$^{+}$] transition altitude occurring in the range of 1.2 to 1.9Rp. H is almost fully ionised at altitudes above 2.9Rp. We also find that the X-ray and EUV absorption takes place at effective radii from 1.16 to 1.30Rp, and that the He triplet peak density occurs at altitudes from 1.04 to 1.60Rp. Additionally, the averaged mmw is confined to the 0.61-0.73 g/mole interval, and the thermospheric H/He ratio should be larger than 90/10, and most likely approximately 98/2. We also provide a one-to-one relationship between mass-loss rate and temperature. Based on the energy-limited escape approach and assuming heating efficiencies of 0.1-0.2, we find a mass-loss rate in the range of (0.42-1.00)$\times 10^{11}$ g/s and a corresponding temperature range of 7125 to 8125K. The analysis of the measured He triplet absorption spectrum significantly constrains the thermospheric structure of HD 209458b and advances our knowledge of its escaping atmosphere.
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