论文标题

LTT 1445A附近的行星系统由Espresso揭示了:三重M-dwarf系统中的多个行星

Planetary system around LTT 1445A unveiled by ESPRESSO: Multiple planets in a triple M-dwarf system

论文作者

Lavie, B., Bouchy, F., Lovis, C., Osorio, M. Zapatero, Deline, A., Barros, S., Figueira, P., Sozzetti, A., Hernandez, J. I. Gonzalez, Lillo-Box, J., Rodrigues, J., Mehner, A., Damasso, M., Adibekyan, V., Alibert, Y., Prieto, C. Allende, Cristiani, S., DOdorico, V., Di Marcantonio, P., Ehrenreich, D., Santos, R. Genova, Curto, G. Lo, Martins, C. J. A. P., Micela, G., Molaro, P., Nunes, N., Palle, E., Pepe, F., Poretti, E., Rebolo, R., Santos, N., Sousa, S., Mascareno, A. Suarez, Tabrenero, H., Udry, S.

论文摘要

我们提出了用M型星LTT 1445a(TOI-455)获得的径向速度随访,为此,TESS检测到轨道周期为〜5.4天的过渡行星B。我们报告了第二个过渡行星(LTT 1445A C)和第三个非运输候选行星(LTT 1445A D)的发现,轨道周期分别为3.12和24.30天。宿主星是三重M-warf系统的主要组成部分,距离为6.9 PC。 We used 84 ESPRESSO high-resolution spectra to determine accurate masses of 2.3$\pm$0.3 $\mathrm{M}_\oplus$ and 1.0$\pm$0.2 $\mathrm{M}_\oplus$ for planets b and c and a minimum mass of 2.7$\pm$0.7 $\mathrm{M}_\oplus$ for行星d。 基于其半径为1.43 $ \ pm0.09 $ $ $ $ \ mathrm {r} _ \ oplus $,源自苔丝观测​​值,LTT 1445A B的密度低于地球,因此可能具有较大的气氛,这使其成为James Webb Space tleescope的主要目标。我们使用嵌套采样算法和一组模型使用贝叶斯推理方法来测试系统检索到系统物理值的鲁棒性。 Planet C的过境在放牧的可能性为85 $ \%$,这导致半径为1.60 $^{+0.67} _ { - 0.34} $ $ \ Mathrm {r} _ \ oplus $。 LTT 1445A d绕着其宿主星的宜居区的内部边界,可能是James Webb太空望远镜的主要目标。

We present radial velocity follow-up obtained with ESPRESSO of the M-type star LTT 1445A (TOI-455), for which a transiting planet b with an orbital period of~5.4 days was detected by TESS. We report the discovery of a second transiting planet (LTT 1445A c) and a third non-transiting candidate planet (LTT 1445A d) with orbital periods of 3.12 and 24.30 days, respectively. The host star is the main component of a triple M-dwarf system at a distance of 6.9 pc. We used 84 ESPRESSO high-resolution spectra to determine accurate masses of 2.3$\pm$0.3 $\mathrm{M}_\oplus$ and 1.0$\pm$0.2 $\mathrm{M}_\oplus$ for planets b and c and a minimum mass of 2.7$\pm$0.7 $\mathrm{M}_\oplus$ for planet d. Based on its radius of 1.43$\pm0.09$ $\mathrm{R}_\oplus$ as derived from the TESS observations, LTT 1445A b has a lower density than the Earth and may therefore hold a sizeable atmosphere, which makes it a prime target for the James Webb Space Telescope. We used a Bayesian inference approach with the nested sampling algorithm and a set of models to test the robustness of the retrieved physical values of the system. There is a probability of 85$\%$ that the transit of planet c is grazing, which results in a retrieved radius with large uncertainties at 1.60$^{+0.67}_{-0.34}$ $\mathrm{R}_\oplus$. LTT 1445A d orbits the inner boundary of the habitable zone of its host star and could be a prime target for the James Webb Space Telescope.

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