Free-floating or wide-orbit? Keck adaptive-optics observations of free-floating planet candidates detected with gravitational microlensing
arXiv:2303.04610 · doi:10.3847/1538-3881/ad1106
Abstract
Recent detections of extremely short-timescale microlensing events imply the existence of a large population of Earth- to Neptune-mass planets that appear to have no host stars. However, it is currently unknown whether these objects are truly free-floating planets or whether they are in wide orbits around a distant host star. Here, we present an analysis of high-resolution imaging observations of five free-floating planet candidates collected with the Keck telescope. If these candidates were actually wide-orbit planets, then the light of the host would appear at a separation of 40-60 mas from the microlensing source star. No such stars are detected. We carry out injection and recovery simulations to estimate the sensitivity to putative host stars at different separations. Depending on the object, the presented observations rule out 11%-36\% of potential hosts assuming that the probability of hosting a planet does not depend on the host mass. The results are sensitive to the latter assumption, and the probability of detecting the host star in the analyzed images may be a factor of 1.9 +/- 0.1 larger, if the exoplanet hosting probability scales as the first power of the host star mass, as suggested by recent studies of planetary microlensing events. We argue that deeper observations, for example with JWST, are needed to confidently confirm or refute the free-floating planet hypothesis.
accepted for publication in AJ
References in corpus (14)
- The Gemini Planet Imager Exoplanet Survey: Giant Planet and Brown Dwarf Demographics From 10-100 AU
- No large population of unbound or wide-orbit Jupiter-mass planets
- A stellar-mass-dependent drop in planet occurrence rates
- The Exoplanet Mass-Ratio Function from the MOA-II Survey: Discovery of a Break and Likely Peak at a Neptune Mass
- OGLE-IV: Fourth Phase of the Optical Gravitational Lensing Experiment
- A Jovian analogue orbiting a white dwarf star
- A terrestrial-mass rogue planet candidate detected in the shortest-timescale microlensing event
- A Search for Stellar-Mass Black Holes via Astrometric Microlensing
- Constraining the Frequency of Free-Floating Planets from a Synthesis of Microlensing, Radial Velocity, and Direct Imaging Survey Results
- KMT-2017-BLG-2820 and the Nature of the Free-Floating Planet Population
- MOA-2007-BLG-400 A Super-Jupiter Mass Planet Orbiting a Galactic BulgeK-dwarf Revealed by Keck Adaptive Optics Imaging
- No Large Dependence of Planet Frequency on Galactocentric Distance
- On the Possibility of Stellar Lenses in the Black Hole Candidate Microlensing Events MACHO-96-BLG-5 and MACHO-98-BLG-6
- OGLE-2007-BLG-224L: Confirmation of Terrestrial Parallax
Cited by in corpus (4)
- An Earth-Mass Planet and a Brown Dwarf in Orbit Around a White Dwarf
- A study of the frequency and characteristics of stellar companions and Jupiter-like planets in nearby open clusters
- Exoplanet Occurrence Rates from Microlensing Surveys
- HST pre-imaging of a free-floating planet candidate microlensing event