Verifying black hole orbits with gravitational spectroscopy
Steve Drasco

TL;DR
This paper simulates gravitational waves from black hole orbits, revealing spectral patterns that could verify black hole dynamics through gravitational spectroscopy, akin to atomic spectral analysis.
Contribution
It introduces a spectral analysis framework for black hole orbits using Teukolsky formalism, enabling potential verification of black hole radiation and orbital evolution.
Findings
Most power is carried by a few hundred modes.
Dominant frequencies form a small number of families.
Spectral properties can be inferred from orbit geometry.
Abstract
Gravitational waves from test masses bound to geodesic orbits of rotating black holes are simulated, using Teukolsky's black hole perturbation formalism, for about ten thousand generic orbital configurations. Each binary radiates power exclusively in modes with frequencies that are integer-linear-combinations of the orbit's three fundamental frequencies. The following general spectral properties are found with a survey of orbits: (i) 99% of the radiated power is typically carried by a few hundred modes, and at most by about a thousand modes, (ii) the dominant frequencies can be grouped into a small number of families defined by fixing two of the three integer frequency multipliers, and (iii) the specifics of these trends can be qualitatively inferred from the geometry of the orbit under consideration. Detections using triperiodic analytic templates modeled on these general properties…
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