OGLE-2017-BLG-1186: first application of asteroseismology and Gaussian processes to microlensing
Abstract
We present the analysis of the event OGLE-2017-BLG-1186 from the 2017 Spitzer microlensing campaign. This is a remarkable microlensing event because its source is photometrically bright and variable, which makes it possible to perform an asteroseismic analysis using ground-based data. We find that the source star is an oscillating red giant with average timescale of d. The asteroseismic analysis also provides us source properties including the source angular size () and distance ( kpc), which are essential for inferring the properties of the lens. When fitting the light curve, we test the feasibility of Gaussian Processes (GPs) in handling the correlated noise caused by the variable source. We find that the parameters from the GP model are generally more loosely constrained than those from the traditional minimization method. We note that this event is the first microlensing system for which asteroseismology and GPs have been used to account for the variable source. With both finite-source effect and microlens parallax measured, we find that the lens is likely a brown dwarf at distance kpc, or a ultracool dwarf at distance kpc. Combining the estimated lens properties with a Bayesian analysis using a Galactic model, we find a per cent probability for the lens to be a bulge object and per cent to be a background disc object.
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Cite
@article{arxiv.1904.07718,
title = {OGLE-2017-BLG-1186: first application of asteroseismology and Gaussian processes to microlensing},
author = {Shun-Sheng Li and Weicheng Zang and Andrzej Udalski and Yossi Shvartzvald and Daniel Huber and Chung-Uk Lee and Takahiro Sumi and Andrew Gould and Shude Mao and Pascal Fouqué and Tianshu Wang and Subo Dong and Uffe G. Jørgensen and Andrew Cole and Przemek Mróz and Michał K. Szymański and Jan Skowron and Radosław Poleski and Igor Soszyński and Paweł Pietrukowicz and Szymon Kozłowski and Krzysztof Ulaczyk and Krzysztof A. Rybicki and Patryk Iwanek and Jennifer C. Yee and Sebastiano Calchi Novati and Charles A. Beichman and Geoffery Bryden and Sean Carey and B. Scott Gaudi and Calen B. Henderson and Wei Zhu and Michael D. Albrow and Sun-Ju Chung and Cheongho Han and Kyu-Ha Hwang and Youn Kil Jung and Yoon-Hyun Ryu and In-Gu Shin and Sang-Mok Cha and Dong-Jin Kim and Hyoun-Woo Kim and Seung-Lee Kim and Dong-Joo Lee and Yongseok Lee and Byeong-Gon Park and Richard W. Pogge and Ian A. Bond and Fumio Abe and Richard Barry and David P. Bennett and Aparna Bhattacharya and Martin Donachie and Akihiko Fukui and Yuki Hirao and Yoshitaka Itow and Iona Kondo and Naoki Koshimoto and Man Cheung Alex Li and Yutaka Matsubara and Yasushi Muraki and Shota Miyazaki and Masayuki Nagakane and Clément Ranc and Nicholas J. Rattenbury and Haruno Suematsu and Denis J. Sullivan and Daisuke Suzuki and Paul J. Tristram and Atsunori Yonehara and Grant Christie and John Drummond and Jonathan Green and Steve Hennerley and Tim Natusch and Ian Porritt and Etienne Bachelet and Dan Maoz and Rachel A. Street and Yiannis Tsapras and Valerio Bozza and Martin Dominik and Markus Hundertmark and Nuno Peixinho and Sedighe Sajadian and Martin J. Burgdorf and Daniel F. Evans and Roberto Figuera Jaimes and Yuri I. Fujii and Lauri K. Haikala and Christiane Helling and Thomas Henning and Tobias C. Hinse and Luigi Mancini and Penelope Longa-Peña and Sohrab Rahvar and Markus Rabus and Jesper Skottfelt and Colin Snodgrass and John Southworth and Eduardo Unda-Sanzana and Carolina von Essen and Jean-Phillipe Beaulieu and Joshua Blackman and Kym Hill},
journal= {arXiv preprint arXiv:1904.07718},
year = {2019}
}
Comments
18 pages, 4 figures, 5 tables. Revised to match version published in MNRAS