activity
20242026
collaborators

8 papers

gr-qc2026

Gotta light? Illuminating AGN disks with LISA EMRIs

Federico Fantoccoli, Francisco Duque, Jonathan Gair

We study the ability of the upcoming Laser Interferometer Space Antenna (LISA) to constrain gas torques acting on extreme-mass-ratio inspirals (EMRIs) when these are embedded in ac…

astro-ph.IM2026

Quantifying the Scientific Potential of Intermediate and Extreme Mass Ratio Inspirals with the Laser Interferometer Space Antenna

Lorenzo Speri, Francisco Duque, Susanna Barsanti +4

The Laser Interferometer Space Antenna (LISA) will enable precision studies of Extreme and Intermediate Mass Ratio Inspirals (EMRIs/IMRIs), providing unique probes of astrophysical…

gr-qc2025

Extreme-mass-ratio inspirals in relativistic accretion discs

Francisco Duque, Laura Sberna, Andrew Spiers +1

We compute relativistic Lindblad torques for circular, equatorial extreme-mass-ratio inspirals (EMRIs) embedded in relativistic thin accretion discs, including spinning black hole…

gr-qc2025

Bias-Corrected Importance Sampling for Inferring Beyond-Vacuum-GR Effects in Gravitational-Wave Sources

Shubham Kejriwal, Francisco Duque, Alvin J. K. Chua +1

The upcoming gravitational wave (GW) observatory LISA will measure the parameters of sources like extreme-mass-ratio inspirals (EMRIs) to exquisite precision. These measurements wi…

gr-qc2025

Impact of relativistic waveforms in LISA's science objectives with extreme-mass-ratio inspirals

Hassan Khalvati, Alessandro Santini, Francisco Duque +4

Extreme-Mass-Ratio Inspirals (EMRIs) are one of the key targets for future space-based gravitational wave detectors, such as LISA. The scientific potential of these sources can onl…

gr-qc2025

Constraining accretion physics with gravitational waves from eccentric extreme-mass-ratio inspirals

Francisco Duque, Shubham Kejriwal, Laura Sberna +2

We study the evolution of eccentric, equatorial extreme-mass-ratio inspirals (EMRIs) immersed in the accretion disks of active galactic nuclei. We find that single gravitational-wa…