Gravitational-wave imprints of non-integrable extreme-mass-ratio inspirals @LISAcommunity
Gravitational-wave imprints of non-integrable extreme-mass-ratio inspirals  @LISAcommunity
Uploaded July 2022 | Updated September 2026, 1 hour ago
The detection of gravitational waves from extreme-mass-ratio inspirals (EMRIs) with upcoming space-borne detectors will allow for unprecedented tests of general relativity in the strong-field regime. Aside from assessing whether black holes are unequivocally described by the Kerr metric, they may place constraints on the degree of spacetime symmetry. Depending on exactly how a hypothetical departure from the Kerr description manifests, the Carter symmetry, which implies the integrability of the geodesic equations, may be broken. In this talk, I will discuss the impact of non-integrability in EMRIs which involve a supermassive compact object with anomalous multipolar structure. After reviewing the features of chaotic phenomena in EMRIs, I will argue that non-integrability is precisely imprinted in the gravitational waveform. Explicit examples of non-integrable EMRIs will be discussed, as well as their role in LISA data analysis.

Author and Presenter: Kyriakos Destounis
Gravitational-wave imprints of non-integrable extreme-mass-ratio inspiralsLISA Symposium 2026 - Parallel 3-CLISA Symposium 2026 - Parallel 4-AGalactic Binary searches at the APC/ParisLISA Symposium 2026 - Plenary 5Sparse data inpainting for the recovery of gapped gravitational waves signalsA distributed chip-scale magnetic diagnostic subsystem for LISAHeavier-tail likelihoods for robustness against outliers in the LISA data-streamParameter extraction from LISA data using tri-linear approximationsLISA Phasemeter based on MicroTCA as ground-support equipmentTesting the nature of compact objects with LISA16th LISA Symposium - Plenary Session 5
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Gravitational-wave imprints of non-integrable extreme-mass-ratio inspirals

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