论文标题

TNG XXI的差距计划 - 已知的年轻行星候选者的贾洲人案例研究:HD 285507 B的确认和AD LEO B的反驳

The GAPS Programme at TNG XXI -- A GIARPS case-study of known young planetary candidates: confirmation of HD 285507 b and refutation of AD Leo b

论文作者

Carleo, I., Malavolta, L., Lanza, A. F., Damasso, M., Desidera, S., Borsa, F., Mallonn, M., Pinamonti, M., Gratton, R., Alei, E., Benatti, S., Mancini, L., Maldonado, J., Biazzo, K., Esposito, M., Frustagli, G., González-Álvarez, E., Micela, G., Scandariato, G., Sozzetti, A., Affer, L., Bignamini, A., Bonomo, A. S., Claudi, R., Cosentino, R., Covino, E., Fiorenzano, A. F. M., Giacobbe, P., Harutyunyan, A., Leto, G., Maggio, A., Molinari, E., Nascimbeni, V., Pagano, I., Pedani, M., Piotto, G., Poretti, E., Rainer, M., Redfield, S., Baffa, C., Baruffolo, A., Buchschacher, N., Billotti, V., Cecconi, M., Falcini, G., Fantinel, D., Fini, L., Galli, A., Ghedina, A., Ghinassi, F., Giani, E., Gonzalez, C., Gonzalez, M., Guerra, J., Diaz, M. Hernandez, Hernandez, N., Iuzzolino, M., Lodi, M., Oliva, E., Origlia, L., Ventura, H. Perez, Puglisi, A., Riverol, C., Riverol, L., Juan, J. San, Sanna, N., Scuderi, S., Seemann, U., Sozzi, M., Tozzi, A.

论文摘要

热木星的存在仍然不太了解。人们认为两个主要通道是其当前位置的原因:平稳的行星通过原始星际磁盘迁移,或者通过潮汐消散导致最初的高偏心轨道的圆形化,从而导致半轴轴强烈降低。不同的形成场景会导致不同的可观察效应,例如轨道参数(倾斜/偏心率)或不同恒星年龄的行星频率。在“差距年轻对象”项目的背景下,我们正在进行径向速度调查,目的是搜索和表征年轻的热杂志行星。我们的目的是对进化模型进行限制并建立统计特性,例如这些行星从均匀样本中的频率。由于通常在磁性上非常活跃,因此我们在TNG上使用同时的Giano-B + Harps-N(Giarps)观察模式进行了多波段(可见和近红外)光谱。这有助于应对恒星活动并区分径向速度变化的性质:恒星活性将引入依赖波长的径向速度幅度,而开普勒信号是可观的。作为一项试点研究,我们在这里介绍了两个已经声称的热木星的案例,这些木星旋转着年轻的恒星:HD285507 B和AD LEO b。我们对同时高精度贾洲光谱数据的分析证实了HD285507的径向速度变化的开普勒性质,并优化了热木星的轨道参数,获得了与圆形轨道一致的偏心度。另一方面,我们的分析无法确认先前归因于行星轨道狮子座的信号。这证明了观察活跃恒星时多波段光谱技术的力量。

The existence of hot Jupiters is still not well understood. Two main channels are thought to be responsible for their current location: a smooth planet migration through the proto-planetary disk or the circularization of an initial high eccentric orbit by tidal dissipation leading to a strong decrease of the semimajor axis. Different formation scenarios result in different observable effects, such as orbital parameters (obliquity/eccentricity), or frequency of planets at different stellar ages. In the context of the GAPS Young-Objects project, we are carrying out a radial velocity survey with the aim to search and characterize young hot-Jupiter planets. Our purpose is to put constraints on evolutionary models and establish statistical properties, such as the frequency of these planets from a homogeneous sample. Since young stars are in general magnetically very active, we performed multi-band (visible and near-infrared) spectroscopy with simultaneous GIANO-B + HARPS-N (GIARPS) observing mode at TNG. This helps to deal with stellar activity and distinguish the nature of radial velocity variations: stellar activity will introduce a wavelength-dependent radial velocity amplitude, whereas a Keplerian signal is achromatic. As a pilot study, we present here the cases of two already claimed hot Jupiters orbiting young stars: HD285507 b and AD Leo b. Our analysis of simultaneous high-precision GIARPS spectroscopic data confirms the Keplerian nature of HD285507's radial velocities variation and refines the orbital parameters of the hot Jupiter, obtaining an eccentricity consistent with a circular orbit. On the other hand, our analysis does not confirm the signal previously attributed to a planet orbiting AD Leo. This demonstrates the power of the multi-band spectroscopic technique when observing active stars.

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