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April 5, 2026Comptes Rendus Physique2 citationsOpen Access

Stimulated Hawking effect and quasinormal mode resonance in a polariton simulator of field theory on curved spacetime

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MBM. BurkhardMKMalte KrojKFKévin Falque

Key Points

  • To examine the stimulated Hawking effect in a polariton simulator under an effective curved spacetime.
  • Numerical examination of the stimulated Hawking effect.
  • Implementation of an effective spacetime with a quasinormal mode (QNM) near the horizon.
  • Assessment of transmission into negative-energy Bogoliubov channel.
  • Stimulated Hawking effect observed as transmission into a negative-energy Bogoliubov channel.
  • Transmission across the horizon peaks at the QNM frequency.
  • Computed spectral signatures provide guidance for future experiments.

Abstract

The Hawking effect amplifies fluctuations in the vicinity of horizons, both in black holes and in analogue platforms. Here, we consider a polariton simulator and numerically examine the stimulated Hawking effect using a coherent probe incident on the horizon from the exterior. We implement an experimentally realistic effective spacetime that supports a quasinormal mode (QNM) in the vicinity of the horizon. We find that the stimulated Hawking effect manifests as transmission into a negative-energy Bogoliubov channel inside the horizon, consistent with pseudo-unitary Bogoliubov scattering. Moreover, transmission across the horizon peaks at the QNM frequency. The computed spectral signatures provide a practical guide for future experimental investigations of the Hawking effect and its interplay with QNMs, an open question in quantum field theory in curved spacetime.

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Cite This Study

Burkhard et al. (2026) studied this question.

synapsesocial.com/papers/69d1fd13a79560c99a0a2f3ahttps://doi.org/10.5802/crphys.278
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