The CARMENES search for exoplanets around M dwarfs

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
A. Kaminski, S. Sabotta, J. Kemmer, P. Chaturvedi, R. Burn, J. C. Morales, J. A. Caballero, I. Ribas, A. Reiners, A. Quirrenbach, P. J. Amado, V. J. S. Béjar, S. Dreizler, E. W. Guenther, A. P. Hatzes, Th. Henning, M. Kürster, D. Montes, E. Nagel, E. Pallé, V. Pinter, S. Reffert, M. Schlecker, Y. Shan, T. Trifonov, M. R. Zapatero Osorio, M. Zechmeister
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Abstract

Aims. Previous estimates of planet occurrence rates in the CARMENES survey indicated increased numbers of planets on short orbits for M dwarfs with masses below 0.34M. Here we focused on the lowest-mass stars in the survey, comprising 15 inactive targets with masses under 0.16 M.Methods. To correct for detection biases, we determined detection sensitivity maps for individual targets and the entire sample. Using Monte Carlo simulations, we estimated planet occurrence rates for orbital periods of 1 d to 100 d and minimum masses from 0.5 M to 10M. We also compared the actual sample of known planets to model predictions.Results. The radial velocity (RV) data from CARMENES reveal four new planets around three stars in our sample, namely G 268– 110 b, G 261–6 b, and G 192–15 b and c. All three b planets have minimum masses of 1.03–1.52 M and orbital periods of 1.43–5.45 d, while G 192–15 c is a 14.3 M planet on a wide, eccentric orbit with P ≈ 1218 d and e ≈ 0.68. Our occurrence rates suggest considerable dependencies with respect to stellar masses. For planets below 3 M we found rates consistent with one planet per star across all investigated periods, but the rates decrease almost by an order of magnitude for larger planet masses up to 10 M. Compared to previous studies, low-mass stars tend to harbor more planets with P < 10 d. We also demonstrate that synthetic planet populations based on the standard core accretion scenario predict slightly more massive planets on wider orbits than observed.Conclusions. Our findings confirm that planet occurrence rates vary with stellar masses even among M dwarfs, as we found more planets with lower masses and on shorter orbits in our subsample of very low-mass stars compared to more massive M dwarfs. Therefore, we emphasize the need for additional differentiation in future studies.
CARMENES在M矮星周围寻找系外行星
目的。之前对CARMENES巡天中行星出现率的估计表明,质量低于0.34M⊙的M矮星短轨道上的行星数量有所增加。在这里,我们重点研究了巡天中质量最低的恒星,包括15个质量低于0.16M⊙的非活动目标。为了校正探测偏差,我们绘制了单个目标和整个样本的探测灵敏度图。通过蒙特卡洛模拟,我们估算了轨道周期从1 d到100 d、最小质量从0.5 M⊕到10 M⊕的行星出现率。我们还将已知行星的实际样本与模型预测进行了比较。来自CARMENES的径向速度(RV)数据揭示了我们样本中三颗恒星周围的四颗新行星,即G 268- 110 b、G 261-6 b和G 192-15 b和c。这三颗b行星的最小质量都是1.03-1.52 M⊕,轨道周期为1.43-5.45 d,而G 192-15 c是一颗14.3 M⊕的行星,位于宽大的偏心轨道上,P≈1218 d,e≈0.68。我们的出现率与恒星质量有相当大的关系。对于质量低于3 M⊕的行星,我们发现在所有研究周期中每颗恒星都有一颗行星,但对于质量高达10 M⊕的大行星,出现率几乎下降了一个数量级。与之前的研究相比,低质量恒星往往蕴藏着更多P < 10 d的行星。我们还证明,基于标准内核吸积情景的合成行星群预测出的轨道比观测到的更宽的大质量行星略多。我们的研究结果证实,即使在M矮星中,行星的出现率也会随恒星质量的变化而变化,因为与质量更大的M矮星相比,我们在极低质量恒星的子样本中发现了更多质量更小、轨道更短的行星。因此,我们强调在今后的研究中需要进一步区分。
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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