We report the analysis of the microlensing event OGLE-2018-BLG-0677. A small feature in the light curve of the event leads to the discovery that the lens is a star-planet system. Although there are two degenerate solutions that could not be distinguished for this event, both lead to a similar planet-host mass ratio. We perform a Bayesian analysis based on a Galactic model to obtain the properties of the system and find that the planet corresponds to a super-Earth/sub-Neptune with a mass Mplanet=3.96−2.66+5.88M⊕. The host star has a mass Mhost=0.12−0.08+0.14M⊙. The projected separation for the inner and outer solutions are 0.63−0.17+0.20~AU and 0.72−0.19+0.23~AU respectively. At Δχ2=χ2(1L1S)−χ2(2L1S)=46, this is by far the lowest Δχ2 for any securely-detected microlensing planet to date, a feature that is closely connected to the fact that it is detected primarily via a "dip" rather than a "bump".
@article{arxiv.2003.02983,
title = {Ogle-2018-blg-0677lb: A super earth near the galactic bulge},
author = {Antonio Herrera-Martín and M. D. Albrow and A. Udalski and A. Gould and Y. -H. Ryu and J. C. Yee and S. -J. Chung and C. Han and K. -H. Hwang and Y. K. Jung and C. -U. Lee and I. -G. Shin and Y. Shvartzvald and W. Zang and S. -M. Cha and D. -J. Kim and H. -W. Kim and S. -L. Kim and D. -J. Lee and Y. Lee and B. -G. Park and R. W. Pogge and M. K. Szymański and P. Mróz and J. Skowron and R. Poleski and I. Soszyński and S. Kozłowski and P. Pietrukowicz and K. Ulaczyk and K. Rybicki and P. Iwanek and M. Wrona},
journal= {arXiv preprint arXiv:2003.02983},
year = {2020}
}