Photometric Constraints on Intermediate-mass Black Holes in the Galactic Centre
arXiv:2511.14856 · doi:10.1088/1538-3873/ae16d6
Abstract
JWST/MIRI observations can place photometric limits on the presence of an intermediate-mass black hole (IMBH) near the Galactic Centre. The stellar complex IRS 13E, a co-moving conglomerate of young and massive stars, is a prime location to study because it has been speculated to be bound by an IMBH. Assuming a standard radiatively inefficient accretion flow (RIAF) and a minimum fractional variability of 10% of intrinsic luminosity, the wavelength of peak emission in the spectral energy distribution for an IMBH would lie in the mid-infrared ( 5-25 m), and variability would be detectable in MIRI time-series observations. Monitoring fails to detect such variable emission (other than from Sgr A*) in and around the IRS 13E complex, and upper limits on a putative IMBH's intrinsic variability on timescales of minutes to about 1 hour are 1 mJy at 12 m and 2 mJy at 19 m. These translate to luminosities erg/s. The resulting limits on the IMBH mass and accretion rate rule out any IMBH with mass M accreting at times Eddington rate at the location of IRS 13E. Further, the observations rule out an IMBH anywhere in the central 6" 6" region that is more massive than 2 M and accreting at of the Eddington rate. Assuming Bondi accretion scaled to typical RIAF-accretion efficiencies, albeit somewhat uncertain, also allows us to rule out IMBHs moving with typical velocities of about 200 km/s and masses M. These methods showcase the effectiveness of photometric variability measurements in constraining the presence of accreting black holes in Galactic centre-like environments.
14 pages, 4 figures, accepted in Publications of Astronomical Society of the Pacific. Corresponding references for extinction correction (von Fellenberg et al.) and aperture correction (Michail et al.) also posted to arXiv today