Gaia20fnr: A binary-lens microlensing event with full orbital motion revealed by four space telescopes
M. Wicker, {\L}. Wyrzykowski, M. Hundertmark, K. A. Rybicki, P. Zieli\'nski, E. Stonkut\.e, N. Ihanec, M. Maskoli\=unas, E. Bachelet, K. Kruszy\'nska, M. Dominik, D. A. H. Buckley, I. Gezer, M. Gromadzki, P. Miko{\l}ajczyk, K. Kotysz, J. Majumdar, E. Pak\v{s}tien\.e

TL;DR
This paper presents a detailed analysis of the Gaia20fnr microlensing event, revealing a binary lens system with full orbital motion using data from four space telescopes and ground-based observations, providing a rare complete Keplerian model.
Contribution
First complete Keplerian binary-lens microlensing model derived for Gaia20fnr, demonstrating the potential of multi-space telescope data for detailed binary system characterization.
Findings
Binary lens composed of two low-mass stars at 0.54 kpc
Full orbital parameters including period and radial velocity semi-amplitude
Event serves as a benchmark for low-mass binary studies via microlensing
Abstract
The microlensing event Gaia20fnr is a long-duration, non-caustic-crossing binary-lens event at high Galactic latitude. Triggered by a photometric rise detected by the Gaia space mission, the event was followed up with observations from multiple ground-based facilities and four space telescopes: Gaia, NEOWISE, Swift, and TESS. We characterize the Gaia20fnr microlensing system by determining the physical and orbital properties of the binary lens, the nature of the luminous source, and the kinematics of both the source and the lens. We employed a binary-lens microlensing model including full Keplerian orbital motion and annual microlens parallax to fit the photometric data. The event is best explained by a K2 giant source at lensed by a stellar binary composed of and at a…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Gamma-ray bursts and supernovae
