OGLE-2019-BLG-0960Lb: The Smallest Microlensing Planet
arXiv:2101.04696 · doi:10.3847/1538-3881/ac1582
Abstract
We report the analysis of OGLE-2019-BLG-0960, which contains the smallest mass-ratio microlensing planet found to date (q = 1.2--1.6 x 10^{-5} at 1-sigma). Although there is substantial uncertainty in the satellite parallax measured by Spitzer, the measurement of the annual parallax effect combined with the finite source effect allows us to determine the mass of the host star (M_L = 0.3--0.6 M_Sun), the mass of its planet (m_p = 1.4--3.1 M_Earth), the projected separation between the host and planet (a_perp = 1.2--2.3 au), and the distance to the lens system (D_L = 0.6--1.2 kpc). The lens is plausibly the blend, which could be checked with adaptive optics observations. As the smallest planet clearly below the break in the mass-ratio function (Suzuki et al. 2016; Jung et al. 2019), it demonstrates that current experiments are powerful enough to robustly measure the slope of the mass-ratio function below that break. We find that the cross-section for detecting small planets is maximized for planets with separations just outside of the boundary for resonant caustics and that sensitivity to such planets can be maximized by intensively monitoring events whenever they are magnified by a factor A > 5. Finally, an empirical investigation demonstrates that most planets showing a degeneracy between (s > 1) and (s < 1) solutions are not in the regime (|log s| >> 0) for which the "close"/"wide" degeneracy was derived. This investigation suggests a link between the "close"/"wide" and "inner/outer" degeneracies and also that the symmetry in the lens equation goes much deeper than symmetries uncovered for the limiting cases.
32 pages, 15 figures, 5 tables. Submitted to AAS Journals
References in corpus (45)
- emcee: The MCMC Hammer
- Intrinsic Colors, Temperatures, and Bolometric Corrections of Pre-Main Sequence Stars
- Reddening and Extinction Toward the Galactic Bulge from OGLE-III: The Inner Milky Way's Rv ~ 2.5 Extinction Curve
- One or more bound planets per Milky Way star from microlensing observations
- Real-Time Difference Imaging Analysis of MOA Galactic Bulge Observations During 2000
- OGLE-2003-BLG-262: Finite-Source Effects from a Point-Mass Lens
- Frequency of Solar-Like Systems and of Ice and Gas Giants Beyond the Snow Line from High-Magnification Microlensing Events in 2005-2008
- A Jovian-mass Planet in Microlensing Event OGLE-2005-BLG-071
- The Exoplanet Mass-Ratio Function from the MOA-II Survey: Discovery of a Break and Likely Peak at a Neptune Mass
- Difference imaging photometry of blended gravitational microlensing events with a numerical kernel
- Resolution of the MACHO-LMC-5 Puzzle: The Jerk-Parallax Microlens Degeneracy
- MOA-2011-BLG-293Lb: A test of pure survey microlensing planet detections
- Chemical evolution of the Galactic bulge as traced by microlensed dwarf and subgiant stars. IV. Two bulge populations
- OGLE-2005-BLG-071Lb, the Most Massive M-Dwarf Planetary Companion?
- Binary microlensing event OGLE-2009-BLG-020 gives a verifiable mass, distance and orbit predictions
- MOA-2009-BLG-387Lb: A massive planet orbiting an M dwarf
- Properties of Planetary Caustics in Gravitational Microlensing
- Microlensing with advanced contour integration algorithm: Green's theorem to third order, error control, optimal sampling and limb darkening
- Acceleration and Parallax Effects in Gravitational Microlensing
- Interstellar Extinction Curve Variations Toward the Inner Milky Way: A Challenge to Observational Cosmology
- Spitzer Parallax of OGLE-2015-BLG-0966: A Cold Neptune in the Galactic Disk
- Gravitational lens under perturbations: Symmetry of perturbing potentials with invariant caustics
- Criteria for Sample Selection to Maximize Planet Sensitivity and Yield from Space-Based Microlens Parallax Surveys
- An Earth-mass Planet in a 1-AU Orbit around an Ultracool Dwarf
- The Lowest Mass Ratio Planetary Microlens: OGLE 2016-BLG-1195Lb
- Extreme Magnification Microlensing Event OGLE-2008-BLG-279: Strong Limits on Planetary Companions to the Lens Star
- Predicting Stellar Angular Diameters from , , , Photometry
- MOA 2003-BLG-37: A Bulge Jerk-Parallax Microlens Degeneracy
- Revisiting MOA 2013 BLG-220L: A Solar-type star with a Cold super-Jupiter Companion
- KMT-2017-BLG-0165Lb: A Super-Neptune mass planet Orbiting a Sun-like Host Star
- The Many Possible Interpretations of Microlensing Event OGLE-2002-BLG-055
- MOA-2007-BLG-400 A Super-Jupiter Mass Planet Orbiting a Galactic BulgeK-dwarf Revealed by Keck Adaptive Optics Imaging
- MOA-2009-BLG-319Lb: A Sub-Saturn Planet Inside the Predicted Mass Desert
- Spitzer Microlensing Parallax for OGLE-2016-BLG-1067: a sub-Jupiter Orbiting an M-dwarf in the Disk
- MOA-2016-BLG-319Lb: Microlensing Planet Subject to Rare Minor-Image Perturbation Degeneracy in Determining Planet Parameter
- Measurement of Source Star Colors with the K2C9-CFHT Multi-color Microlensing Survey
- Extending the Planetary Mass Function to Earth Mass by Microlensing at Moderately High Magnification
- Three microlensing planets with no caustic-crossing features
- OGLE-2017-BLG-0406: Microlens Parallax Reveals Saturn-mass Planet orbiting M-dwarf Host in the Inner Galactic Disk
- OGLE-2016-BLG-1227L: A Wide-separation Planet from a Very Short-timescale Microlensing Event
- KMT-2019-BLG-0842Lb: A Cold Planet Below the Uranus/Sun Mass Ratio
- Spitzer Microlensing parallax reveals two isolated stars in the Galactic bulge
- Evidence of Systematic Errors in Microlens Parallax Measurements
- The Korea Microlensing Telescope Network (KMTNet) Alert Algorithm and Alert System
- KMT-2016-BLG-1836Lb: A Super-Jovian Planet From A High-Cadence Microlensing Field
Cited by in corpus (4)
- OGLE-2018-BLG-0567Lb and OGLE-2018-BLG-0962Lb: Two Microlensing Planets through Planetary-Caustic Channel
- Kepler K2 Campaign 9: II. First space-based discovery of an exoplanet using microlensing
- An Earth-mass Planet in a Time of Covid-19: KMT-2020-BLG-0414Lb
- On the condition for the central caustic degeneracy of the planetary microlensing