Self-lensing flares from black hole binaries V: systematic searches in LSST

Fuente: arXiv
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Autori principali: Park, Kevin, Haiman, Zoltan, Xin, Chengcheng, Shen, Tzuken, Villar, Ashley, Davelaar, Jordy
Natura: Preprint
Pubblicazione: 2025
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author Park, Kevin
Haiman, Zoltan
Xin, Chengcheng
Shen, Tzuken
Villar, Ashley
Davelaar, Jordy
author_facet Park, Kevin
Haiman, Zoltan
Xin, Chengcheng
Shen, Tzuken
Villar, Ashley
Davelaar, Jordy
contents The Vera C. Rubin Observatory has now seen first light, and over a 10 year duration, LSST is projected to catalogue tens of millions of quasars, many of which are expected to be associated with sub-parsec supermassive black hole binaries (SMBHBs). Out of these SMBHBs, up to thousands of relatively massive binary-quasars are expected to exhibit gravitational self-lensing flares (SLFs) that last for at least 20-30 days. We assess the effectiveness of the Lomb-Scargle (LS) periodogram and matched filters (MFs) as methods for systematic searches for these binaries, using toy-models of hydrodynamical, Doppler, and self-lensing variability from equal-mass, eccentric SMBHBs. We inject SLFs into random realizations of damped random walk (DRW) lightcurves, representing stochastic quasar variability, and compute the LS periodogram with and without the SLF. We find that periodograms of SLF+DRW light-curves do not have maximum peak heights that could not arise from DRW-only periodograms. On the other hand, the matched filter signal-to-noise ratio (SNR) can distinguish SLFs from noise even with LSST-like cadences and DRW noise. Furthermore, we develop a three-step procedure with matched filters, which can also recover injected binary parameters from these light-curves. We expect this method to be computationally efficient enough to be applicable to millions of quasar light-curves in LSST.
format Preprint
id arxiv_https___arxiv_org_abs_2512_08427
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Self-lensing flares from black hole binaries V: systematic searches in LSST
Park, Kevin
Haiman, Zoltan
Xin, Chengcheng
Shen, Tzuken
Villar, Ashley
Davelaar, Jordy
High Energy Astrophysical Phenomena
Astrophysics of Galaxies
The Vera C. Rubin Observatory has now seen first light, and over a 10 year duration, LSST is projected to catalogue tens of millions of quasars, many of which are expected to be associated with sub-parsec supermassive black hole binaries (SMBHBs). Out of these SMBHBs, up to thousands of relatively massive binary-quasars are expected to exhibit gravitational self-lensing flares (SLFs) that last for at least 20-30 days. We assess the effectiveness of the Lomb-Scargle (LS) periodogram and matched filters (MFs) as methods for systematic searches for these binaries, using toy-models of hydrodynamical, Doppler, and self-lensing variability from equal-mass, eccentric SMBHBs. We inject SLFs into random realizations of damped random walk (DRW) lightcurves, representing stochastic quasar variability, and compute the LS periodogram with and without the SLF. We find that periodograms of SLF+DRW light-curves do not have maximum peak heights that could not arise from DRW-only periodograms. On the other hand, the matched filter signal-to-noise ratio (SNR) can distinguish SLFs from noise even with LSST-like cadences and DRW noise. Furthermore, we develop a three-step procedure with matched filters, which can also recover injected binary parameters from these light-curves. We expect this method to be computationally efficient enough to be applicable to millions of quasar light-curves in LSST.
title Self-lensing flares from black hole binaries V: systematic searches in LSST
topic High Energy Astrophysical Phenomena
Astrophysics of Galaxies
url https://arxiv.org/abs/2512.08427