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Kepler Object of Interest Network I. First results combining ground- and space-based observations of Kepler systems with transit timing variations
von Essen, C.1,2; Ofir, A.2,3; Dreizler, S.2; Agol, E.4,5,6; Freudenthal, J.2; Hernandez, J.7; Wedemeyer, S.8,9; Parkash, V.10; Deeg, H. J.11,12; Hoyer, S.11,12,13; Morris, B. M.4; Becker, A. C.4; Sun LL(孙磊磊)14; Gu SH(顾盛宏)14; Herrero, E.15; Tal-Or, L.2,17; Poppenhaeger, K.18; Mallonn, M.19; Albrecht, S.1; Khalafinejad, S.20; Boumis, P.21; Delgado-Correal, C.22; Fabrycky, D. C.23; Janulis, R.24; Lalitha, S.25; Liakos, A.21; Mikolaitis, S.24; Moyano D'Angelo, M. L.26; Sokov, E.27,28; Pakstiene, E.24; Popov, A.29; Krushinsky, V.29; Ribas, I.15; Rodriguez, M. M. S.7; Rusov, S.27; Sokova, I.27; Tautvaisiene, G.24; Wang XB(王晓彬)14
发表期刊ASTRONOMY & ASTROPHYSICS
2018-07-17
卷号615页码:15
DOI10.1051/0004-6361/201732483
产权排序第14完成单位
收录类别SCI
关键词instrumentation: photometers methods: data analysis techniques: photometric planets and satellites: dynamical evolution and stability
摘要

During its four years of photometric observations, the Kepler space telescope detected thousands of exoplanets and exoplanet candidates. One of Kepler's greatest heritages has been the confirmation and characterization of hundreds of multi-planet systems via transit timing variations (TTVs). However, there are many interesting candidate systems displaying TTVs on such long timescales that the existing Kepler observations are of insufficient length to confirm and characterize them by means of this technique. To continue with Kepler's unique work, we have organized the "Kepler Object of Interest Network" (KOINet), a multi-site network formed of several telescopes located throughout America, Europe, and Asia. The goals of KOINet are to complete the TTV curves of systems where Kepler did not cover the interaction timescales well, to dynamically prove that some candidates are true planets (or not), to dynamically measure the masses and bulk densities of some planets, to find evidence for non-transiting planets in some of the systems, to extend Kepler's baseline adding new data with the main purpose of improving current models of TTVs, and to build a platform that can observe almost anywhere on the northern hemisphere, at almost any time. KOINet has been operational since March 2014. Here we show some promising first results obtained from analyzing seven primary transits of KOI1-0410.01, KOI-0525.01, KOI-0760.01, and KOI-0902.01, in addition to the Kepler data acquired during the first and second observing seasons of KOINet. While carefully choosing the targets we set demanding constraints on timing precision (at least 1 min) and photometric precision (as good as one part per thousand) that were achieved by means of our observing strategies and data analysis techniques. For KOI-0410.01, new transit data revealed a turnover of its TTVs. We carried out an in-depth study of the system, which is identified in the NASA Data Validation Report as a false positive. Among others, we investigated a gravitationally bound hierarchical triple star system and a planet-star system. While the simultaneous transit fitting of ground- and space-based data allowed for a planet solution, we could not fully reject the three-star scenario. New data, already scheduled in the upcoming 2018 observing season, will set tighter constraints on the nature of the system.

资助项目Danish National Research Foundation[DNRF106] ; NASA[NNX13A124G] ; NASA[NNX13AF62G] ; NASA[NNH05ZDA001C] ; National Science Foundation (NSF)[AST-1615315] ; NASA Astrobiology Institutes Virtual Planetary Laboratory ; Research Council of Norway[188910] ; International Space Science Institute (ISSI) in Bern, Switzerland ; German Research Foundation (DFG)[DR 281/30-1] ; Ministry of Education and Science[AAAA-A17-117030310283-7] ; Government of the Russian Federation[02.A03.21.0006] ; Spanish Ministry of Economy and Competitiveness (MINECO) ; Fondo Europeo de Desarrollo Regional (FEDER)[ESP201680435-C2-1-R] ; Generalitat de Catalunya/CERCA programme ; Research Council of Lithuania (LMT)[LAT-08/2016] ; Erasmus Mundus Joint Doctorate Program from the EACEA of the European Commission[2014-0707] ; Russian Science Foundation[14-50-00043] ; Russian Foundation for Basic Research[17-02-00542] ; UK Science and Technology Facilities Council through STFC[ST/P000312/1] ; Spanish Secretary of State for RDi (MINECO)[ESP2015-65712-05-4-R] ; Guggenheim Fellowship
项目资助者Danish National Research Foundation[DNRF106] ; NASA[NNX13A124G, NNX13AF62G, NNH05ZDA001C] ; National Science Foundation (NSF)[AST-1615315] ; NASA Astrobiology Institutes Virtual Planetary Laboratory ; Research Council of Norway[188910] ; International Space Science Institute (ISSI) in Bern, Switzerland ; German Research Foundation (DFG)[DR 281/30-1] ; Ministry of Education and Science[AAAA-A17-117030310283-7] ; Government of the Russian Federation[02.A03.21.0006] ; Spanish Ministry of Economy and Competitiveness (MINECO) ; Fondo Europeo de Desarrollo Regional (FEDER)[ESP201680435-C2-1-R] ; Generalitat de Catalunya/CERCA programme ; Research Council of Lithuania (LMT)[LAT-08/2016] ; Erasmus Mundus Joint Doctorate Program from the EACEA of the European Commission[2014-0707] ; Russian Science Foundation[14-50-00043] ; Russian Foundation for Basic Research[17-02-00542] ; UK Science and Technology Facilities Council through STFC[ST/P000312/1] ; Spanish Secretary of State for RDi (MINECO)[ESP2015-65712-05-4-R] ; Guggenheim Fellowship
语种英语
学科领域天文学 ; 天体物理学 ; 实测天体物理学 ; 恒星与银河系 ; 恒星天文学
文章类型Article
出版者EDP SCIENCES S A
出版地17, AVE DU HOGGAR, PA COURTABOEUF, BP 112, F-91944 LES ULIS CEDEX A, FRANCE 期刊信息
ISSN1432-0746
URL查看原文
WOS记录号WOS:000439002800011
WOS研究方向Astronomy & Astrophysics
WOS类目Astronomy & Astrophysics
关键词[WOS]PLANETARY SYSTEM ; LIGHT CURVES ; EXTRASOLAR PLANETS ; PARAMETER-ESTIMATION ; CCD PHOTOMETRY ; MASS ; TIME ; SERIES ; STAR ; CONFIRMATION
引用统计
被引频次:15[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.ynao.ac.cn/handle/114a53/21526
专题系外行星研究组
通讯作者von Essen, C.
作者单位1.Stellar Astrophysics Centre, Ny Munkegade 120, 8000 Aarhus, Denmark
2.Institut für Astrophysik, Georg-August-Universität Göttingen, Friedrich-Hund-Platz 1, 37077 Göttingen, Germany
3.Department of Earth and Planetary Sciences, Weizmann Institute of Science, Rehovot 76100, Israel
4.Astronomy Department, University of Washington, Seattle, WA 98195, USA
5.Institut d’Astrophysique de Paris, 98 bis Boulevard Arago, 75014 Paris, France
6.NASA Astrobiology Institute, Virtual Planetary Laboratory Team, Seattle, Washington, USA
7.Instituto de Astronomía, UNAM, Campus Ensenada, Carretera Tijuana-Ensenada km 103, 22860 Ensenada, B.C. México
8.Rosseland Centre for Solar Physics, University of Oslo, PO Box 1029 Blindern, 0315 Oslo, Norway
9.Institute of Theoretical Astrophysics, University of Oslo, PO Box 1029 Blindern, 0315 Oslo, Norway
10.School of Physics and Astronomy, Monash Centre for Astrophysics (MoCA), Monash University, Clayton, Victoria 3800, Australia
11.Instituto de Astrofísica de Canarias, C/ Vía Láctea s/n, 38205 La Laguna, Tenerife, Spain
12.Universidad de La Laguna, Dept. de Astrofísica, 38206 La Laguna, Tenerife, Spain
13.Aix-Marseille Université, CNRS, LAM, Laboratoire d’Astrophysique de Marseille, Marseille, France
14.Yunnan Observatories, Chinese Academy of Sciences, PO Box 110, Kunming 650216, Yunnan Province, PR China
15.Institut de Ciéncies de l’Espai (IEEC-CSIC), C/ Can Magrans s/n, Campus UAB, 08193 Bellaterra, Spain
16.Observatori del Montsec (OAdM), Institut d’Estudis Espacials de Catalunya (IEEC), C/ Gran Capità 2-4, Edif. Nexus, 08034 Barcelona, Spain
17.School of Geosciences, Raymond and Beverly Sackler Faculty of Exact Sciences, Tel Aviv University, Tel Aviv 6997801, Israel
18.Astrophysics Research Centre, Queen's University Belfast, Belfast BT7 1NN, UK
19.Leibniz-Institut für Astrophysik Potsdam, An der Sternwarte 16, 14482 Potsdam, Germany
20.Hamburg Observatory, Hamburg University, Gojenbergsweg 112, 21029 Hamburg, Germany
21.Institute for Astronomy, Astrophysics, Space Applications and Remote Sensing, National Observatory of Athens, Metaxa & Vas. Pavlou St., Penteli, Athens, Greece
22.Dipartimento di Fisica e Scienze della Terra, Universitá degli Studi di Ferrara, via Saragat 1, 44122 Ferrara, Italy
23.Department of Astronomy & Astrophysics, University of Chicago, Chicago, IL 60637, USA
24.Institute of Theoretical Physics and Astronomy, Vilnius University, Sauletekio 3, 10257 Vilnius, Lithuania
25.Indian Institute of Astrophysics, Koramangala II block, Bangalore 560034, India
26.Instituto de Astronomía, Universidad Católica del Norte, Av. Angamos, 0610 Antofagasta, Chile
27.Central Astronomical Observatory at Pulkovo of Russian Academy of Sciences, Pulkovskoje shosse d. 65, St. Petersburg 196140, Russia
28.Special Astrophysical Observatory, Russian Academy of Sciences, Nizhnij Arkhyz 369167, Russia
29.Kourovka Astronomical Observatory of Ural Federal University, Mira Str. 19, 620002 Yekaterinburg, Russia
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von Essen, C.,Ofir, A.,Dreizler, S.,et al. Kepler Object of Interest Network I. First results combining ground- and space-based observations of Kepler systems with transit timing variations[J]. ASTRONOMY & ASTROPHYSICS,2018,615:15.
APA von Essen, C..,Ofir, A..,Dreizler, S..,Agol, E..,Freudenthal, J..,...&Wang XB.(2018).Kepler Object of Interest Network I. First results combining ground- and space-based observations of Kepler systems with transit timing variations.ASTRONOMY & ASTROPHYSICS,615,15.
MLA von Essen, C.,et al."Kepler Object of Interest Network I. First results combining ground- and space-based observations of Kepler systems with transit timing variations".ASTRONOMY & ASTROPHYSICS 615(2018):15.
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