The first mid-infrared transmission spectrum of a disintegrating exoplanet, K2-22b, disfavors an iron-dominated core, is consistent with magnesium silicate mantle dust, and reveals an unexplained 5 micron feature possibly due to NO or CO2 gas.
A Disintegrating Rocky Planet with Prominent Comet-like Tails Around a Bright Star
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
We report the discovery of BD+05$\,$4868$\,$Ab, a transiting exoplanet orbiting a bright ($V=10.16$) K-dwarf (TIC 466376085) with a period of 1.27 days. Observations from NASA's Transiting Exoplanet Survey Satellite (TESS) reveal variable transit depths and asymmetric transit profiles that are characteristic of comet-like tails formed by dusty effluents emanating from a disintegrating planet. Unique to BD+05$\,$4868$\,$Ab is the presence of prominent dust tails in both the trailing and leading directions that contribute to the extinction of starlight from the host star. By fitting the observed transit profile and analytically modeling the drift of dust grains within both dust tails, we infer large grain sizes ($\sim1-10\,\mu$m) and a mass loss rate of $10\,M_{\rm \oplus}\,$Gyr$^{-1}$, suggestive of a lunar-mass object with a disintegration timescale of only several Myr. The host star is probably older than the Sun and is accompanied by an M-dwarf companion at a projected physical separation of 130 AU. The brightness of the host star, combined with the planet's relatively deep transits ($0.8-2.0\%$), presents BD+05$\,$4868$\,$Ab as a prime target for compositional studies of rocky exoplanets and investigations into the nature of catastrophically evaporating planets.
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astro-ph.EP 1years
2025 1verdicts
CONDITIONAL 1representative citing papers
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A Disintegrating Rocky World Shrouded in Dust and Gas: Mid-IR Observations of K2-22b using JWST
The first mid-infrared transmission spectrum of a disintegrating exoplanet, K2-22b, disfavors an iron-dominated core, is consistent with magnesium silicate mantle dust, and reveals an unexplained 5 micron feature possibly due to NO or CO2 gas.