YNAO OpenIR  > 系外行星研究组
凌食系外行星系统TTV现象的研究
其他题名TTV study of transiting exoplanetary systems
孙磊磊
学位类型博士
导师顾盛宏
2019-07-01
学位授予单位中国科学院大学
学位授予地点北京
学位专业天体物理
关键词凌食系外行星系统 凌食事件 恒星黑子 TTV 动力学模拟
摘要自1995年第一颗围绕类太阳恒星运动的太阳系外行星被发现之后,随着地面与空间太阳系外行星搜寻项目的不断扩展,目前超过3700颗太阳系外行星已被人类发现。此外,Kepler卫星借助凌食事件法还探测到了4400多颗待证认的太阳系外行星侯选体。对于太阳系外行星系统的研究可以帮助人类认识太阳系自身的形成与演化,同时还可以在太阳系外行星系统中搜寻处于宜居带的类地行星以及系外生命。因而在短短的二十年内,太阳系外行星已经成为了天体物理学的一个重要研究领域。 凌食系外行星系统是太阳系外行星系统中独特的一类,系统中的行星周期性地凌食宿主恒星,即所谓的凌食事件。对凌食事件进行测光观测,不仅能够获得系统的物理参数和行星的物理特征,而且通过研究这些凌食事件的中心时刻对严格周期性的偏离,即Transit Timing Variation(TTV)现象,还可以对系统中已发现但尚未被证实的行星侯选体进行证认与刻画,以及对系统中尚未被发现的行星进行探测。更为重要的是,这些基本物理参数为研究系外行星的结构、形成和动力学演化提供了非常重要的线索。因而,我们选取了一些地面巡天计划(例如,SuperWASP 和HATNet等)发现的凌食系统进行跟随观测与研究。与此同时,我们还对Kepler空间望远镜发现的行星系统进行新行星的探测与刻画。 在2010年到2015年期间,我们利用中国科学院云南天文台1m和2.4m光学望远镜,香港可观自然教育中心暨天文馆0.5m望远镜以及西班牙0.3m望远镜对凌食系外行星系统HAT-P-20的十一次凌食事件实施了测光观测。使用标准的IRAF例程对测光图像进行处理,并对时序测光数据进行系统误差改正,最后得到了十二条较高精度的HAT-P-20的凌食光变曲线。此外,我们还搜集了文献中可用的光变曲线和视向速度曲线数据。由于该系统的主星表面存在较强的磁场活动,因而这些凌食光变曲线受到了HATP-20表面黑子活动不同程度的扰动。为了更加准确地分析这些凌食光变曲线,我们开发了一套可以同时对行星的凌食事件与行星掩食黑子事件(spot crossing event)进行模拟的工具Spot and Transit Modeling Tool(STMT)。借助STMT得到了HAT-P-20更加准确的系统参数以及凌食中心时刻,并证实该系统较为显著的TTV信号是由主星光球表面较强的磁场活动导致而非系统中尚未探测到的天体的引力摄动所致。 通过对Kepler空间望远镜探测到的行星系统进行调研,发现其中的Kepler-411系统比较有研究价值。具体表现在:(1)基于Kepler空间望远镜的测光数据,探测到了三组行星侯选体凌食宿主恒星Kepler-411的信号,但目前只有两组信号被证实为两颗真正的行星;(2)只有未被确认的凌食信号存在较显著的TTV现象,且该TTV的振幅达到50分钟左右;(3)三个凌食天体的轨道周期之间不具备通约性,即产生较强TTV现象的平均运动共振状态(MMR)不存在。经过我们对该系统的测光数据与TTV进行分析,证实第三个信号确实来源于一颗环绕Kepler-411的凌食行星,并探测到了另外一颗与该行星接近1:2 MMR的非凌食行星。基于对测量得到的行星半径和质量的分析,我们发现最内部的凌食行星属于岩石类行星,而外部的两颗凌食行星除内部的固态核还有一定质量的气态包层。最后,对该行星系统进行了大量的动力学模拟发现该系统至少可以稳定运行1 Myr。
其他摘要Since the discovery of the first extrasolar planet orbiting a Sun-like star in 1995, more than3,700 extrasolar planets have been discovered with the development of many ground-basedand space-based exoplanet-hunting projects. In addition, Kepler mission has also detectedmore than 4,400 exoplanet candidates with the help of transit method. The study of extrasolarplanetary systems can help us to understand the formation and evolution of our Solar system, aswell as search for Earth-like planets in the habitable zone and life outside our Solar system. Injust two decades, the study of extrasolar planets has become an important field of astrophysics.As a special type of extrasolar planetary system, the transiting exoplanetary system ischaracterized by its periodic transit events. Through the photometric observation of transitevents, we can not only obtain the physical parameters and planetary properties, but also confirmand characterize the discovered but unproven planetary candidates, as well as detect theundiscovered planetary bodies in the system. In addition, these fundamental physical parametersprovide an important cornerstone for the study of the structure, formation and dynamicevolution of exoplanets. Therefore, we carried out a series of follow-up observations for sometransiting exoplanetary systems detected by several ground-based transit survey projects, suchas SuperWASP, HATNet and so on. At the same time, we are also exploring and characterizingexoplanetary systems discovered by Kepler mission. From 2010 to 2015, we carried out photometric observations for eleven transit events oftransiting exoplanetary system HAT-P-20 by using the 1m and 2.4m telescopes of Yunnan Observatories of Chinese Academy of Sciences, the 0.5m telescope of Ho Koon Nature Educationcum Astronomical Centre in China and the 0.3m telescope in Spain. Using the standard IRAFroutine, the photometric images were reduced, and the systematic errors in the light curveswere corrected. In addition, we also collected the light curves and radial velocity curves availablein the literatures. Due to the strong magnetic activity on the surface of the host star of thesystem, these transit light curves su er varying distortions from spots of host star HAT-P-20.In order to accurately analyze these light curves, we developed the Spot and Transit ModelingTool (STMT), which can efficiently simulate multiple transit events and spot-crossing eventsof a spotted host star. With the help of STMT, we obtain more accurate system parameters andtransit times of HAT-P-20, and confirm that the significant TTV signal found by the previousresearch is induced by the strong magnetic activity of the host star rather than the gravitationalperturbation from any undetected body in the system. By investigating the exoplanetary systems detected by Kepler mission, we find that thekepler-411 is a comparatively valuable system. It is shown in :(1) based on the photometricdata of Kepler-411 collected by Kepler mission, the transit-like signals may be induced by threeplanet candidates, but only two signals were confirmed to be transit events of two exoplanetsorbiting Kepler-411. (2) only the unconfirmed transit-like signals show a significant TTV, andthe amplitude of the TTV reaches up to about 50 minutes. (3) the periods of these transitingbodies do not show any commensurability, that is, two planets and one planetary candidateare not in or near the mean motion resonances (MMR), in which the TTV signals induced bygravitational interactions between planets are amplified. Through comprehensively analyzingthe photometric data and newly measured TTV, we confirm that the transit-like signals areinduced by a transiting planet orbiting kepler-411, and detect a non-transiting planet which iscloser to 1:2 MMR with the third transiting planet. Based on the analysis of the measured radiiand masses, we find that the innermost planet is a rocky planet, while the outer two planets bothhave gaseous envelope besides the massive core. Finally, numerous dynamic simulations showthat transiting exoplanetary system Kepler-411 could run stably at least 1 Myr.
学科领域天文学 ; 恒星与银河系
学科门类理学 ; 理学::天文学
页数105
语种中文
文献类型学位论文
条目标识符http://ir.ynao.ac.cn/handle/114a53/25457
专题系外行星研究组
作者单位中国科学院云南天文台
第一作者单位中国科学院云南天文台
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孙磊磊. 凌食系外行星系统TTV现象的研究[D]. 北京. 中国科学院大学,2019.
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