At q=1.81±0.20×10−5, KMT-2018-BLG-0029Lb has the lowest planet-host mass ratio q of any microlensing planet to date by more than a factor of two. Hence, it is the first planet that probes below the apparent "pile-up" at q=5--10 ×10−5. The event was observed by {\it Spitzer}, yielding a microlens-parallax πE measurement. Combined with a measurement of the Einstein radius θE from finite-source effects during the caustic crossings, these measurements imply masses of the host Mhost=1.14−0.12+0.10M⊙ and planet Mplanet=7.59−0.69+0.75M⊕, system distance DL=3.38−0.26+0.22kpc and projected separation a⊥=4.27−0.23+0.21au. The blended light, which is substantially brighter than the microlensed source, is plausibly due to the lens and could be observed at high resolution immediately.
@article{arxiv.1906.11183,
title = {KMT-2018-BLG-0029Lb: A Very Low Mass-Ratio Spitzer Microlens Planet},
author = {Andrew Gould and Yoon-Hyun Ryu and Sebastiano Calchi Novati and Weicheng Zang and Michael D. Albrow and Sun-Ju Chung and Cheongho Han and Kyu-Ha Hwang and Youn Kil Jung and In-Gu Shin and Yossi Shvartzvald and Jennifer C. Yee and Sang-Mok Cha and Dong-Jin Kim and Hyoun-Woo Kim and Seung-Lee Kim and Chung-Uk Lee and Dong-Joo Lee and Yongseok Lee and Byeong-Gon Park and Richard W. Pogge and Charles Beichman and Geoff Bryden and Sean Carey and B. Scott Gaudi and Calen B. Henderson and Wei Zhu and Pascal Fouqué and Matthew T. Penny and Andreea Petric and Todd Burdullis and Shude Mao},
journal= {arXiv preprint arXiv:1906.11183},
year = {2020}
}