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Mass Production of 2021 KMTNet Microlensing Planets. I

Yoon-Hyun Ryu, Youn Kil Jung, Hongjing Yang, Andrew Gould, Michael D. Albrow, Sun‐Ju Chung, Cheongho Han, Kyu‐Ha Hwang, In-Gu Shin, Yossi Shvartzvald, Jennifer C. Yee, Weicheng Zang, Sang-Mok Cha, Dong-Jin Kim, Seung‐Lee Kim, Chung‐Uk Lee, Dong-Joo Lee, Yongseok Lee, Byeong-Gon Park, Richard W. Pogge

2022The Astronomical Journal23 citationsDOIOpen Access PDF

Abstract

Abstract We inaugurate a program of “mass production” of microlensing planets discovered in 2021 KMTNet data, with the aim of laying the basis for future statistical studies. While we ultimately plan to quickly publish all 2021 planets meeting some minimal criteria, the current sample of four was chosen simply on the basis of having low initial estimates of the planet–host mass ratio, q . It is therefore notable that two members of this sample suffer from a degeneracy in the normalized source radius ρ that arises from different morphologies of closely spaced caustics. All four planets (KMT-2021-BLG-1391, KMT-2021-BLG-1253, KMT-2021-BLG-1372, KMT-2021-BLG-0748) have well-characterized mass ratios, q , and therefore are suitable for mass-ratio frequency studies. Both of the ρ degeneracies can be resolved by future adaptive optics (AO) observations on 30 m class telescopes. We provide general guidance for such AO observations for all events in anticipation of the prospect that they will revolutionize the field of microlensing planets.

Topics & Concepts

Gravitational microlensingPlanetPhysicsAstrophysicsAstronomyExoplanetMass ratioStarsStellar, planetary, and galactic studiesAstronomy and Astrophysical ResearchGamma-ray bursts and supernovae
Mass Production of 2021 KMTNet Microlensing Planets. I | Litcius