论文标题

TOI-1260D的发现和多行星系统的表征

Discovery of TOI-1260d and the characterisation of the multi-planet system

论文作者

Lam, Kristine W. F., Cabrera, J., Hooton, M. J., Alibert, Y., Bonfanti, A., Beck, M., Deline, A., Florén, H. -G., Simon, A. E., Fossati, L., Persson, C. M., Fridlund, M., Salmon, S., Hoyer, S., Osborn, H. P., Wilson, T . G., Georgieva, I. Y., Nowak, Gr., Luque, R., Egger, J. A., Alonso, V. Adibekyan R., Escudé, G. Anglada, Bárczy, T., Barrado, D., Barros, S. C. C., Baumjohann, W., Beck, T., Bekkelien, A., Benz, W., Billot, N., Bonfils, X., Brandeker, A., Broeg, C., Charnoz, S., Cameron, A. Collier, Csizmadia, Sz., Davies, M. B., Deleuil, M., Delrez, L., Demangeon, O. D. S., Demory, B. -O., Ehrenreich, D., Erikson, A., Fortier, A., Futyan, D., Gandolfi, D., Gillon, M., Guedel, M., Guterman, P., Laskar, J., Latham, D. W., Etangs, A. Lecavelier des, Lendl, M., Lovis, C., Heng, K., Isaak, K. G., Kiss, L., Magrin, D., Maxted, P. F. L., Nascimbeni, V., Olofsson, G., Ottensamer, R., Pagano, I., Pallé, E., Peter, G., Piotto, G., Pollacco, D., Queloz, D., Ribas, I., Ragazzoni, R., Rando, N., Rauer, H., Santos, N. C., Scandariato, G., Seager, S., Ségransan, D., Serrano, L. M., Smith, A. M. S., Sousa, S. G., Steller, M., Szabó, Gy. M., Thomas, N., Udry, S., Van Grootel, V., Walton, N. A., Winn, J. N.

论文摘要

我们报告了传播恒星TOI-1260的第三行星的发现,该行星以前众所周知,轨道周期分别为3.127天和7.493天,该行星以前众所周知。具有16.6天轨道的第三个过渡行星的性质得到了基于地面的随访观测值,包括时间序列光度法,高角度分辨率图像,光谱和档案成像。使用Cheops进行精确的光度监测可以改善系统参数的约束,从而提高我们对其组成的了解。 TOI-1260B的改进半径为$ 2.36 \ pm 0.06 \ rm r _ {\ oplus} $,$ 2.82 \ pm 0.08 \ rm rm r _ {\ oplus} $,而新近发现的第三个星球则为$ 3.099 \ rm \ rm r _ {\ oplus} $。半径不确定性在3 \%的范围内,可以精确解释三个行星的内部结构。我们的行星内部组成模型表明,TOI-1260系统中的所有三个行星都包含一定一部分气体。最内向的行星TOI-1260B很可能失去了其所有以氢为主的信封。行星C和D也很可能通过逃生经历了大气损失,但与行星b相比较小。

We report the discovery of a third planet transiting the star TOI-1260, previously known to host two transiting sub-Neptune planets with orbital periods of 3.127 and 7.493 days, respectively. The nature of the third transiting planet with a 16.6-day orbit is supported by ground-based follow-up observations, including time-series photometry, high-angular resolution images, spectroscopy, and archival imagery. Precise photometric monitoring with CHEOPS allows to improve the constraints on the parameters of the system, improving our knowledge on their composition. The improved radii of TOI-1260b, TOI-1260c are $2.36 \pm 0.06 \rm R_{\oplus}$, $2.82 \pm 0.08 \rm R_{\oplus}$, respectively while the newly discovered third planet has a radius of $3.09 \pm 0.09 \rm R_{\oplus}$. The radius uncertainties are in the range of 3\%, allowing a precise interpretation of the interior structure of the three planets. Our planet interior composition model suggests that all three planets in the TOI-1260 system contains some fraction of gas. The innermost planet TOI-1260b has most likely lost all of its primordial hydrogen-dominated envelope. Planets c and d were also likely to have experienced significant loss of atmospheric through escape, but to a lesser extent compared to planet b.

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