Kepler K2 Campaign 9: II. First space-based discovery of an exoplanet using microlensing
Abstract
We present K2-2016-BLG-0005Lb, a densely sampled, planetary binary caustic-crossing microlensing event found from a blind search of data gathered from Campaign 9 of the Kepler K2 mission (K2C9). K2-2016-BLG-0005Lb is the first bound microlensing exoplanet discovered from space-based data. The event has caustic entry and exit points that are resolved in the K2C9 data, enabling the lens--source relative proper motion to be measured. We have fitted a binary microlens model to the Kepler data, and to simultaneous observations from multiple ground-based surveys. Whilst the ground-based data only sparsely sample the binary caustic, they provide a clear detection of parallax that allows us to break completely the microlensing mass--position--velocity degeneracy and measure the planet's mass directly. We find a host mass of and a planetary mass of . The system lies at a distance of kpc from Earth towards the Galactic bulge, more than twice the distance of the previous most distant planet found by Kepler. The sky-projected separation of the planet from its host is found to be au which, for circular orbits, deprojects to a host separation au and orbital period yr. This makes K2-2016-BLG-0005Lb a close Jupiter analogue orbiting a low-mass host star. According to current planet formation models, this system is very close to the host mass threshold below which Jupiters are not expected to form. Upcoming space-based exoplanet microlensing surveys by NASA's Nancy Grace Roman Space Telescope and, possibly, ESA's Euclid mission, will provide demanding tests of current planet formation models.
Cite
@article{arxiv.2203.16959,
title = {Kepler K2 Campaign 9: II. First space-based discovery of an exoplanet using microlensing},
author = {D. Specht and R. Poleski and M. T. Penny and E. Kerins and I. McDonald and Chung-Uk Lee and A. Udalski and I. A. Bond and Y. Shvartzvald and Weicheng Zang and R. A. Street and D. W. Hogg and B. S. Gaudi and T. Barclay and G. Barentsen and S. B. Howell and F. Mullally and C. B. Henderson and S. T. Bryson and D. A. Caldwell and M. R. Haas and J. E. Van Cleve and K. Larson and K. McCalmont and C. Peterson and D. Putnam and S. Ross and M. Packard and L. Reedy and Michael D. Albrow and Sun-Ju Chung and Youn Kil Jung and Andrew Gould and Cheongho Han and Kyu-Ha Hwang and Yoon-Hyun Ryu and In-Gu Shin and Hongjing Yang and Jennifer C. Yee and Sang-Mok Cha and Dong-Jin Kim and Seung-Lee Kim and Dong-Joo Lee and Yongseok Lee and Byeong-Gon Park and Richard W. Pogge and M. K. Szymański and I. Soszyński and K. Ulaczyk and P. Pietrukowicz and Sz. Kozlowski and J. Skowron and P. Mróz and Shude Mao and Pascal Fouqué and Wei Zhu and F. Abe and R. Barry and D. P. Bennett and A. Bhattacharya and A. Fukui and H. Fujii and Y. Hirao and Y. Itow and R. Kirikawa and I. Kondo and N. Koshimoto and Y. Matsubara and S. Matsumoto and S. Miyazaki and Y. Muraki and G. Olmschenk and C. Ranc and A. Okamura and N. J. Rattenbury and Y. Satoh and T. Sumi and D. Suzuki and S. I. Silva and T. Toda and P. J. Tristram and A. Vandorou and H. Yama and C. Beichman and G. Bryden and S. Calchi Novati},
journal= {arXiv preprint arXiv:2203.16959},
year = {2023}
}
Comments
18 pages. Accepted for publication in MNRAS Published by Oxford University Press on behalf of the Royal Astronomical Society