OGLE-2013-BLG-0911Lb: A Secondary on the Brown-Dwarf Planet Boundary around an M-dwarf
Shota Miyazaki, Takahiro Sumi, David P. Bennett, Andrzej Udalski,, Yossi Shvartzvald, Rachel Street, Valerio Bozza, Jennifer C. Yee, Ian A., Bond, Nicholas Rattenbury, Naoki Koshimoto, Daisuke Suzuki, Akihiko Fukui, F., Abe, A. Bhattacharya, R. Barry, M. Donachie, H. Fujii

TL;DR
This paper analyzes a microlensing event revealing a low-mass companion near the planet-brown dwarf boundary orbiting an M-dwarf, providing insights into formation mechanisms of such objects.
Contribution
It presents a detailed analysis of a binary-lens microlensing event with revised parameters, highlighting the detection of a companion near the planet-brown dwarf boundary around an M-dwarf.
Findings
The lens system consists of an M-dwarf with a massive Jupiter companion.
The companion's mass is near the planet-brown dwarf boundary (~13 M_Jup).
Microlensing effectively probes low-mass companions around M-dwarfs.
Abstract
We present the analysis of the binary-lens microlensing event OGLE-2013-BLG-0911. The best-fit solutions indicate the binary mass ratio of q~0.03 which differs from that reported in Shvartzvald+2016. The event suffers from the well-known close/wide degeneracy, resulting in two groups of solutions for the projected separation normalized by the Einstein radius of s~0.15 or s~7. The finite source and the parallax observations allow us to measure the lens physical parameters. The lens system is an M-dwarf orbited by a massive Jupiter companion at very close (M_{host}=0.30^{+0.08}_{-0.06} M_{Sun}, M_{comp}=10.1^{+2.9}_{-2.2} M_{Jup}, a_{exp}=0.40^{+0.05}_{-0.04} au) or wide (M_{host}=0.28^{+0.10}_{-0.08} M_{Sun}, M_{comp}=9.9^{+3.8}_{-3.5}M_{Jup}, a_{exp}=18.0^{+3.2}_{-3.2} au) separation. Although the mass ratio is slightly above the planet-brown dwarf (BD) mass-ratio boundary of q=0.03…
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