Published 27 Oct 2025 in astro-ph.EP, astro-ph.IM, and astro-ph.SR | (2510.23709v1)
Abstract: JWST's unprecedented sensitivity enables precise spectrophotometric monitoring of substellar worlds, revealing atmospheric variability driven by mechanisms operating across different pressure levels. This same precision now permits exceptionally sensitive searches for transiting exosatellites, small terrestrial companions to these worlds. Using a novel simultaneous dual-band search method to address host variability, we present a search for transiting exosatellites in an 8-hour JWST/MIRI LRS lightcurve of the nearby (2.0pc) substellar binary WISE J1049-5319AB, composed of two ∼30MJup​ brown dwarfs separated by 3.5au and viewed near edge-on. Although we detect no statistically significant transits, our injection-recovery tests demonstrate sensitivity to satellites as small as 0.275R⊕​ (0.96RIo​ or ∼1 lunar radius), corresponding to 300ppm transit depths, and satellite-to-host mass ratios $>$$10{-6}.</sup>ThisapproachpavesthewayfordetectingGalilean−moonanalogsarounddirectlyimagedbrowndwarfs,free−floatingplanets,andwide−orbitexoplanets,dozensofwhicharealreadyscheduledforJWSTlightcurvemonitoring.InourSolarSystem,eachgiantplanethostsonaverage3.5moonsabovethisthreshold,suggestingthatJWSTnowprobesaregimewheresuchcompanionsareexpectedtobeabundant.Thetechniqueandsensitivitiesdemonstratedheremarkacriticalsteptowarddetectingexosatellitesandultimatelyenablingconstraintsontheoccurrenceratesofsmallterrestrialworldsorbiting1\text{-}70MJup​ hosts.