Repeating nuclear transients as candidate electromagnetic counterparts of LISA extreme mass ratio inspirals

Author:

Kejriwal Shubham1,Witzany Vojtěch2,Zajaček Michal3,Pasham Dheeraj R4,Chua Alvin J K15

Affiliation:

1. Department of Physics, National University of Singapore , Singapore 117551, Singapore

2. Institute of Theoretical Physics, Faculty of Mathematics and Physics, Charles University , CZ-180 00 Prague , Czech Republic

3. Department of Theoretical Physics and Astrophysics, Faculty of Science, Masaryk University , Kotlářská 2, CZ-611 37 Brno , Czech Republic

4. Kavli Institute for Astrophysics and Space Research, Massachusetts Institute of Technology , Cambridge, MA 02139 , USA

5. Department of Mathematics, National University of Singapore , Singapore 119076, Singapore

Abstract

ABSTRACT Extreme mass ratio inspirals (EMRIs) are one of the primary targets for the recently adopted millihertz gravitational-wave observatory LISA. Some previous studies have argued that a fraction of all EMRIs form in matter-rich environments, and can potentially explain the dozens of soft X-ray band ($\sim 10^{-1}\,\rm keV$), low-frequency ($\sim 0.1$ mHz) periodic phenomena known as quasi-periodic eruptions (QPEs) and quasi-periodic oscillations (QPOs). Here, using a representative EMRI population retrofitted with cutoffs on LISA-band SNRs and luminosity distances to account for the sensitivity of current instruments, we estimate the mean frequency band in which QPEs and QPOs originating from detectable LISA EMRIs may be emitting an X-ray signal ‘today’ (i.e. in 2024) to be $0.46 \pm 0.22$ mHz. We also model the well-known QPO source, RE J1034+396, which falls in this frequency band, as an EMRI assuming its primary black hole mass to be $10^6{-}10^7 \,{\rm M}_\odot$. Through a prior-predictive analysis, we estimate the orbiting compact object’s mass to be $46^{+ 10}_{-40} \,{\rm M}_\odot$ and the source’s LISA-band SNR as $\approx 14$, highlighting it as a candidate multimessenger EMRI target. We also highlight the role of current and near-future X-ray and UV observatories in enabling multimessenger observations of EMRIs in conjunction with LISA, and conclude with a discussion of caveats of the current analysis, such as the exclusion of eccentricity and inclination from the model, and the measurability of subsolar mass compact object EMRIs.

Publisher

Oxford University Press (OUP)

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