English

KMT-2021-BLG-1150Lb: Microlensing planet detected through a densely covered planetary-caustic signal

Earth and Planetary Astrophysics 2023-07-12 v1 Astrophysics of Galaxies Instrumentation and Methods for Astrophysics

Abstract

Recently, there have been reports of various types of degeneracies in the interpretation of planetary signals induced by planetary caustics. In this work, we check whether such degeneracies persist in the case of well-covered signals by analyzing the lensing event KMT-2021-BLG-1150, for which the light curve exhibits a densely and continuously covered short-term anomaly. In order to identify degenerate solutions, we thoroughly investigate the parameter space by conducting dense grid searches for the lensing parameters. We then check the severity of the degeneracy among the identified solutions. We identify a pair of planetary solutions resulting from the well-known inner-outer degeneracy, and find that interpreting the anomaly is not subject to any degeneracy other than the inner-outer degeneracy. The measured parameters of the planet separation (normalized to the Einstein radius) and mass ratio between the lens components are (s,q)in(1.297,1.10×103)(s, q)_{\rm in}\sim (1.297, 1.10\times 10^{-3}) for the inner solution and (s,q)out(1.242,1.15×103)(s, q)_{\rm out}\sim (1.242, 1.15\times 10^{-3}) for the outer solution. According to a Bayesian estimation, the lens is a planetary system consisting of a planet with a mass Mp=0.880.36+0.38 MJM_{\rm p}=0.88^{+0.38}_{-0.36}~M_{\rm J} and its host with a mass Mh=0.730.30+0.32 MM_{\rm h}=0.73^{+0.32}_{-0.30}~M_\odot lying toward the Galactic center at a distance DL=3.81.2+1.3D_{\rm L} =3.8^{+1.3}_{-1.2}~kpc. By conducting analyses using mock data sets prepared to mimic those obtained with data gaps and under various observational cadences, it is found that gaps in data can result in various degenerate solutions, while the observational cadence does not pose a serious degeneracy problem as long as the anomaly feature can be delineated.

Keywords

Cite

@article{arxiv.2305.15628,
  title  = {KMT-2021-BLG-1150Lb: Microlensing planet detected through a densely covered planetary-caustic signal},
  author = {Cheongho Han and Youn Kil Jung and Ian A. Bond and Andrew Gould and Sun-Ju Chung and Michael D. Albrow and Kyu-Ha Hwang and Yoon-Hyun Ryu and In-Gu Shin and Yossi Shvartzvald and Hongjing Yang and Jennifer C. Yee and Weicheng Zang and Sang-Mok Cha and Doeon Kim and Dong-Jin Kim and Seung-Lee Kim and Chung-Uk Lee and Dong-Joo Lee and Yongseok Lee and Byeong-Gon Park and Richard W. Pogge and Fumio Abe and Richard Barry and David P. Bennett and Aparna Bhattacharya and Hirosame Fujii and Akihiko Fukui and Ryusei Hamada and Yuki Hirao and Stela Ishitani Silva and Yoshitaka Itow and Rintaro Kirikawa and Iona Kondo and Naoki Koshimoto and Yutaka Matsubara and Sho Matsumoto and Shota Miyazaki and Yasushi Muraki and Arisa Okamura and Greg Olmschenk and Clément Ranc and Nicholas J. Rattenbury and Yuki Satoh and Takahiro Sumi and Daisuke Suzuki and Taiga Toda and Mio Tomoyoshi and Paul J. Tristram and Aikaterini Vandorou and Hibiki Yama and Kansuke Yamashita},
  journal= {arXiv preprint arXiv:2305.15628},
  year   = {2023}
}

Comments

9 pages, 8 figures