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KMT-2016-BLG-1836Lb: A Super-Jovian Planet From A High-Cadence Microlensing Field

Authors :
Yang, Hongjing
Zhang, Xiangyu
Hwang, Kyu-Ha
Zang, Weicheng
Gould, Andrew
Wang, Tianshu
Mao, Shude
Albrow, Michael D.
Chung, Sun-Ju
Han, Cheongho
Jung, Youn Kil
Ryu, Yoon-Hyun
Shin, In-Gu
Shvartzvald, Yossi
Yee, Jennifer C.
Zhu, Wei
Penny, Matthew T.
Fouqué, Pascal
Cha, Sang-Mok
Kim, Dong-Jin
Kim, Hyoun-Woo
Kim, Seung-Lee
Lee, Chung-Uk
Lee, Dong-Joo
Lee, Yongseok
Park, Byeong-Gon
Pogge, Richard W.
Yang, Hongjing
Zhang, Xiangyu
Hwang, Kyu-Ha
Zang, Weicheng
Gould, Andrew
Wang, Tianshu
Mao, Shude
Albrow, Michael D.
Chung, Sun-Ju
Han, Cheongho
Jung, Youn Kil
Ryu, Yoon-Hyun
Shin, In-Gu
Shvartzvald, Yossi
Yee, Jennifer C.
Zhu, Wei
Penny, Matthew T.
Fouqué, Pascal
Cha, Sang-Mok
Kim, Dong-Jin
Kim, Hyoun-Woo
Kim, Seung-Lee
Lee, Chung-Uk
Lee, Dong-Joo
Lee, Yongseok
Park, Byeong-Gon
Pogge, Richard W.
Publication Year :
2019

Abstract

We report the discovery of a super-Jovian planet in the microlensing event KMT-2016-BLG-1836, which was found by the Korea Microlensing Telescope Network's high-cadence observations (\Gamma ~ 4~{hr}^{-1}). The planet-host mass ratio q ~ 0.004. A Bayesian analysis indicates that the planetary system is composed of a super-Jovian M_{planet} = 2.2_{-1.1}^{+1.9} M_{J} planet orbiting an M or K dwarf M_{\rm host} = 0.49_{-0.25}^{+0.38} M_{Sun}, at a distance of D_{L} = 7.1_{-2.4}^{+0.8} kpc. The projected planet-host separation is 3.5^{+1.1}_{-0.9} AU, implying that the planet is located beyond the snowline of the host star. Future high-resolution images can potentially strongly constrain the lens brightness and thus the mass and distance of the planetary system. Without considering detailed detection efficiency, selection or publication biases, we find a potential "mass ratio desert" at -3.7 \lesssim \log q \lesssim -3.0 for the 31 published KMTNet planets.<br />Comment: accepted by AAS Journal

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1363516351
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.3847.1538-3881.ab660e