IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astronomy & Astrophysics Pub Date : 2024-12-17 DOI:10.1051/0004-6361/202451068
J.-V. Harre, A. M. S. Smith, S. C. C. Barros, V. Singh, J. Korth, A. Brandeker, A. Collier Cameron, M. Lendl, T. G. Wilson, L. Borsato, Sz. Csizmadia, J. Cabrera, H. Parviainen, A. C. M. Correia, B. Akinsanmi, N. Rosario, P. Leonardi, L. M. Serrano, Y. Alibert, R. Alonso, J. Asquier, T. Bárczy, D. Barrado Navascues, W. Baumjohann, W. Benz, N. Billot, C. Broeg, M.-D. Busch, P. E. Cubillos, M. B. Davies, M. Deleuil, A. Deline, L. Delrez, O. D. S. Demangeon, B.-O. Demory, A. Derekas, B. Edwards, D. Ehrenreich, A. Erikson, A. Fortier, L. Fossati, M. Fridlund, D. Gandolfi, K. Gazeas, M. Gillon, M. Güdel, M. N. Günther, A. Heitzmann, Ch. Helling, K. G. Isaak, L. L. Kiss, K. W. F. Lam, J. Laskar, A. Lecavelier des Etangs, D. Magrin, P. F. L. Maxted, B. Merín, C. Mordasini, V. Nascimbeni, G. Olofsson, R. Ottensamer, I. Pagano, E. Pallé, G. Peter, D. Piazza, G. Piotto, D. Pollacco, D. Queloz, R. Ragazzoni, N. Rando, H. Rauer, I. Ribas, N. C. Santos, G. Scandariato, D. Ségransan, A. E. Simon, S. G. Sousa, M. Stalport, S. Sulis, Gy. M. Szabó, S. Udry, B. Ulmer, V. Van Grootel, J. Venturini, E. Villaver, V. Viotto, N. A. Walton, R. West, K. Westerdorff
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引用次数: 0

摘要

背景。热木星(HJs)与近邻行星伴星的情况非常罕见,迄今为止只发现了少数几个。这可能是由于它们的动力学历史可能导致其他行星的抛射。TOI-2109 b在这方面比较特殊,因为它是与其主星相对距离最近的HJ,相距不到2.3个恒星半径。出乎意料的是,最近获得的CHEOPS观测数据中的凌日定时测量结果显示出低振幅的凌日定时变化(TTVs)。我们的目的是寻找轨道衰变的迹象,并描述明显的 TTVs,以试图获得关于可能的伴星的信息。我们使用 TLCM 对新获得的 CHEOPS 光曲线进行了拟合,并提取了由此得到的中轨时间。随后,我们将这些测量结果与TESS和档案光度数据以及径向速度(RV)数据结合使用,估算了TOI-2109 b的潮汐轨道衰减率,并使用N-body代码TRADES和PyTTV的光动力学方法描述了TTV。当我们使用最拟合的正弦波TTVs模型修正中期凌日时间时,我们在3σ处发现了TOI-2109系统轨道衰变的初步证据。由于恒星的快速旋转,我们无法在现有的 RV 测量数据中探测到这颗新的候选行星,其参数只能通过我们的 TTV 和 RV 联合建模得到粗略的约束。TOI-2109可能会加入一小群罕见的HJ系统的行列,这些系统中只有一个(WASP-47 b)有外行星伴星。要确认该行星伴星的存在,还需要进行更多高精度的测光测量。
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Hints of a close outer companion to the ultra-hot Jupiter TOI-2109 b★
Context. Hot Jupiters (HJs) with close-by planetary companions are rare, with only a handful of them having been discovered so far. This could be due to their suggested dynamical histories, which lead to the possible ejection of other planets. TOI-2109 b is special in this regard because it is the HJ with the closest relative separation from its host star, being separated by less than 2.3 stellar radii. Unexpectedly, transit timing measurements from recently obtained CHEOPS observations show low-amplitude transit-timing variations (TTVs).Aims. We aim to search for signs of orbital decay and to characterise the apparent TTVs in an attempt to gain information about a possible companion.Methods. We fitted the newly obtained CHEOPS light curves using TLCM and extracted the resulting mid-transit timings. Successively, we used these measurements in combination with TESS and archival photometric data and radial velocity (RV) data to estimate the rate of tidal orbital decay of TOI-2109 b, and also to characterise the TTVs using the N-body code TRADES and the photo-dynamical approach of PyTTV.Results. We find tentative evidence at 3σ for orbital decay in the TOI-2109 system when we correct the mid-transit timings using the best-fitting sinusoidal model of the TTVs. We do not detect additional transits in the available photometric data, but find evidence supporting the authenticity of the apparent TTVs, indicating a close-by, outer companion with Pc > 1.125 d. Due to the fast rotation of the star, the new planetary candidate cannot be detected in the available RV measurements, and its parameters can only be loosely constrained by our joint TTV and RV modelling.Conclusions. TOI-2109 could join a small group of rare HJ systems that host close-by planetary companions, only one of which (WASP-47 b) has an outer companion. More high-precision photometric measurements are necessary to confirm the existence of this planetary companion.
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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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