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Reconstructing the Free-floating Planet Mass Function with the Nancy Grace Roman Space Telescope

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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.

fields

astro-ph.IM 1

years

2026 1

verdicts

CONDITIONAL 1

representative citing papers

Microlensing Detection and Inference via Learned Bayes Factors

astro-ph.IM · 2026-07-22 · conditional · novelty 6.0

A unified transformer-based pipeline detects 99.9% of recoverable simulated microlensing events and outperforms literature hard cuts in the short-duration finite-source regime with amortized neural posterior inference.

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  • Microlensing Detection and Inference via Learned Bayes Factors astro-ph.IM · 2026-07-22 · conditional · none · ref 33 · internal anchor

    A unified transformer-based pipeline detects 99.9% of recoverable simulated microlensing events and outperforms literature hard cuts in the short-duration finite-source regime with amortized neural posterior inference.