Multiple quasinormal modes and overtones are measured from interface waves on a giant quantum vortex in superfluid helium-4 that emulates a rotating black-hole geometry.
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Simulation-based inference reliably extracts physical parameters from noisy spectra of analogue black holes.
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Black-hole spectroscopy from a giant quantum vortex
Multiple quasinormal modes and overtones are measured from interface waves on a giant quantum vortex in superfluid helium-4 that emulates a rotating black-hole geometry.
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Spectroscopy of analogue black holes using simulation-based inference
Simulation-based inference reliably extracts physical parameters from noisy spectra of analogue black holes.