Analyses of anomalous lensing events detected from the UKIRT microlensing survey

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astronomy & Astrophysics Pub Date : 2025-04-14 DOI:10.1051/0004-6361/202553811
Cheongho Han, Weicheng Zang, Andrzej Udalski, Chung-Uk Lee, Ian A. Bond, Yongxin Wen, Bo Ma, Michael D. Albrow, Sun-Ju Chung, Andrew Gould, Kyu-Ha Hwang, Youn Kil Jung, Yoon-Hyun Ryu, Yossi Shvartzvald, In-Gu Shin, Hongjing Yang, Jennifer C. Yee, Doeon Kim, Dong-Jin Kim, Sang-Mok Cha, Seung-Lee Kim, Dong-Joo Lee, Yongseok Lee, Byeong-Gon Park, Richard W. Pogge, Przemek Mróz, Michał K. Szymański, Jan Skowron, Radosław Poleski, Igor Soszyński, Paweł Pietrukowicz, Szymon Kozłowski, Krzysztof A. Rybicki, Patryk Iwanek, Krzysztof Ulaczyk, Marcin Wrona, Mariusz Gromadzki, Mateusz J. Mróz, Fumio Abe, Ken Bando, David P. Bennett, Aparna Bhattacharya, Akihiko Fukui, Ryusei Hamada, Shunya Hamada, Naoto Hamasaki, Yuki Hirao, Stela Ishitani Silva, Naoki Koshimoto, Yutaka Matsubara, Shota Miyazaki, Yasushi Muraki, Tutumi Nagai, Kansuke Nunota, Greg Olmschenk, Clément Ranc, Nicholas J. Rattenbury, Yuki Satoh, Takahiro Sumi, Daisuke Suzuki, Sean K. Terry, Paul J. Tristram, Aikaterini Vandorou, Hibiki Yama
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Abstract

Aims. The United Kingdom Infrared Telescope (UKIRT) microlensing survey was conducted over four years, from 2016 to 2019, with the goal of serving as a precursor to future near-infrared microlensing surveys. Focusing on stars in the Galactic center and utilizing near-infrared passbands, the survey identified approximately one thousand microlensing events, 27 of which displayed anomalies in their light curves. This paper presents an analysis of these anomalous events, aiming to uncover the underlying causes of the observed anomalies.Methods. The events were analyzed under various configurations, considering the potential binarity of both the lens and the source. For 11 events that were additionally observed by other optical microlensing surveys, including those conducted by the OGLE, KMTNet, and MOA collaborations, we incorporated their data into our analysis.Results. Among the reported anomalous events, we revealed the nature of 24 events except for three events, in which one was likely to be a transient variable, and two were difficult to accurately characterize their nature due to the limitations of the available data. We confirmed the binary lens nature of the anomalies in 22 events. Among these, we verified the earlier discovery that the companion in the binary lens system UKIRT11L is a planetary object. Accurately describing the anomaly in UKIRT21 required a model that accounted for the binarity of both the lens and the source. For two events UKIRT01 and UKIRT17, the anomalies could be interpreted using either a binary-source or a binary-lens model. For the UKIRT05, it was found that accounting for higher-order effects induced by the orbit al motions of both Earth and the binary lens was crucial. With the measured microlensing parallax togeter with the angular Einstein radius, the component masses of the UKIRT05 binary lens were determined to be M1 = (1.05 ± 0.20) M, M2 = (0.36 ± 0.07) M, and the distance to the lens was found to be DL = (3.11 ± 0.40) kpc.
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从UKIRT微透镜调查中检测到的异常透镜事件分析
目的。英国红外望远镜(UKIRT)微透镜调查从2016年到2019年进行了四年,目的是作为未来近红外微透镜调查的先驱。这次调查以银河系中心的恒星为重点,利用近红外通带,发现了大约一千个微透镜事件,其中27个事件的光曲线显示出异常。本文对这些异常事件进行了分析,旨在揭示观测到的异常现象的根本原因。考虑到透镜和光源的潜在二元性,在不同配置下对这些事件进行了分析。对于由其他光学微透镜巡天(包括由OGLE、KMTNet和MOA合作开展的巡天)额外观测到的11个事件,我们将其数据纳入了我们的分析中。在报告的异常事件中,我们揭示了 24 个事件的性质,只有 3 个事件除外,其中一个可能是瞬变,另外两个由于可用数据的限制而难以准确描述其性质。我们确认了 22 个异常事件的双透镜性质。其中,我们验证了早先的发现,即双透镜系统UKIRT11L中的伴星是一个行星天体。要准确描述UKIRT21中的异常现象,需要一个模型来解释透镜和星源的双星性。对于 UKIRT01 和 UKIRT17 这两个事件,可以使用双源或双透镜模型来解释异常现象。对于 UKIRT05,研究发现考虑地球和双透镜的轨道运动所引起的高阶效应至关重要。利用测得的微透镜视差和爱因斯坦角半径,UKIRT05双透镜的质量被确定为 M1 = (1.05 ± 0.20) M⊙,M2 = (0.36 ± 0.07) M⊙,与透镜的距离被确定为 DL = (3.11 ± 0.40) kpc。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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