The light curve of the microlensing event KMT-2021-BLG-1898 exhibits a short-term central anomaly with double-bump features that cannot be explained by the usual binary-lens or binary-source interpretations. With the aim of interpreting the anomaly, we analyze the lensing light curve under various sophisticated models. We find that the anomaly is explained by a model, in which both the lens and source are binaries (2L2S model). For this interpretation, the lens is a planetary system with a planet/host mass ratio of q∼1.5×10−3, and the source is a binary composed of a turn off or a subgiant star and a mid K dwarf. The double-bump feature of the anomaly can also be depicted by a triple-lens model (3L1S model), in which the lens is a planetary system containing two planets. Among the two interpretations, the 2L2S model is favored over the 3L1S model not only because it yields a better fit to the data, by Δχ2=[14.3--18.5], but also the Einstein radii derived independently from the two stars of the binary source result in consistent values. According to the 2L2S interpretation, KMT-2021-BLG-1898 is the third planetary lensing event occurring on a binary stellar system, following MOA-2010-BLG-117 and KMT-2018-BLG-1743. Under the 2L2S interpretation, we identify two solutions resulting from the close-wide degeneracy in determining the planet-host separation. From a Bayesian analysis, we estimate that the planet has a mass of ∼0.7--0.8~MJ, and it orbits an early M dwarf host with a mass of ∼0.5M⊙. The projected planet-host separation is ∼1.9~AU and ∼3.0~AU according to the close and wide solutions, respectively.
@article{arxiv.2204.11378,
title = {KMT-2021-BLG-1898: Planetary microlensing event involved with binary source stars},
author = {Cheongho Han and Andrew Gould and Doeon Kim and Youn Kil Jung and Michael D. Albrow and Sun-Ju Chung and Kyu-Ha Hwang and Chung-Uk Lee and Yoon-Hyun Ryu and In-Gu Shin and Yossi Shvartzvald and Jennifer C. Yee and Weicheng Zang and Sang-Mok Cha and Dong-Jin Kim and Seung-Lee Kim and Dong-Joo Lee and Yongseok Lee and Byeong-Gon Park and Richard W. Pogge},
journal= {arXiv preprint arXiv:2204.11378},
year = {2022}
}