Prospects for Reconstructing the Free-floating Planet Mass Function at the Population Level with the Nancy Grace Roman Space Telescope
arXiv:2505.00092 · doi:10.3847/1538-3881/ae6e36
Abstract
Free-floating planets comprise one of the most enigmatic populations of exoplanets in the Galaxy. Though ground-based observations point to a large abundance of these worlds, little is known about their origins and demographics. In the coming years, the Nancy Grace Roman Space Telescope's Galactic Bulge Time Domain Survey is expected to detect several hundred free-floating planets, providing the first opportunity to characterize these worlds at the population level. We present a first study of Roman's prospects for reconstructing the mass distribution of free-floating planets through population-level statistical inference. We find that depending on the true underlying mass distribution of free-floating planets in the Galaxy, Roman will be able to improve upon existing estimates of the abundance by orders of magnitudes in the largely unexplored mass range below that of Earth. When applied to Roman's observations, the methodology we present herein will be capable of discriminating between different hypothesized mass distributions at high statistical significance, opening a new window into the origins of these rogue worlds.
19 pages, 10 figures
References in corpus (22)
- Array Programming with NumPy
- Primordial Black Holes as Dark Matter Candidates
- Predictions of the Nancy Grace Roman Space Telescope Galactic Exoplanet Survey II: Free-Floating Planet Detection Rates
- A rich population of free-floating planets in the Upper Scorpius young stellar association
- Stability of Multiplanetary Systems in Star Clusters
- Survivability of planetary systems in young and dense star clusters
- A terrestrial-mass rogue planet candidate detected in the shortest-timescale microlensing event
- The Demographics of Rocky Free-Floating Planets and their Detectability by WFIRST
- Mapping the stellar age of the Milky Way bulge with the VVV. III. High resolution reddening map
- KMT-2017-BLG-2820 and the Nature of the Free-Floating Planet Population
- A Parametric Galactic Model toward the Galactic Bulge Based on Gaia and Microlensing Data
- Euclid-Roman joint microlensing survey: early mass measurement, free floating planets and exomoons
- Rogue worlds meet the dark side: revealing terrestrial-mass primordial black holes with the Nancy Grace Roman Space Telescope
- Identification of a turnover in the initial mass function of a young stellar cluster down to 0.5 M
- Probability of simultaneous parallax detection for free-floating planet microlensing events near Galactic Centre
- Disentangling the Black Hole Mass Spectrum with Photometric Microlensing Surveys
- DIPSY: A new Disc Instability Population SYnthesis, II. The Populations of Companions Formed Through Disc Instability
- Constraints on sub-terrestrial free-floating planets from Subaru microlensing observations
- KMT-2022-BLG-2397: Brown Dwarf at the Upper Shore of the Einstein Desert
- KMT-2025-BLG-1616Lb: First Microlensing Bound Planet From DREAMS
- Planet Mass Function around M stars at 1-10 au: A Plethora of sub-Earth mass objects
- The impact of the free-floating planet (FFP) mass function on the event rate for the accurate microlensing parallax determination: application to Euclid and Roman parallax observation