Collective optonuclear cavity quantum electrodynamics in 229Th nanophotonic resonators

Mamian K, de Haan J, Bi T, Dubey S, Kazakoy G, Beeks K, Marquardt C, Kraemer S, Pereira L, Del'Haye P, van Gasse K, Schumm T, Roques-Carmes C (2026)


Publication Type: Conference contribution

Publication year: 2026

Original Authors: Karen Mamian, Jan de Haan, Toby Bi, Swadheen Dubey, Georgy A. Kazakov, Kjeld Beeks, Christoph Marquardt, Sandro Kraemer, Lino M.C. Pereira, Pascal Del’Haye, Kasper van Gasse, Thorsten Schumm, Charles Roques-Carmes

Event location: Long Beach, CA US

DOI: 10.1364/CLEO_FS.2026.FTU1B.4

Abstract

We develop a quantum theory of light-matter interactions in 229Th nanophotonic resonators pumped via the optonuclear quadrupolar effect, predicting detectable photon fluxes with realistic platforms and revealing how collective dynamics shape the future nuclear clock performance.

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How to cite

APA:

Mamian, K., de Haan, J., Bi, T., Dubey, S., Kazakoy, G., Beeks, K.,... Roques-Carmes, C. (2026). Collective optonuclear cavity quantum electrodynamics in 229Th nanophotonic resonators. In Proceedings of the CLEO: Fundamental Science 2026. Long Beach, CA, US.

MLA:

Mamian, Karen, et al. "Collective optonuclear cavity quantum electrodynamics in 229Th nanophotonic resonators." Proceedings of the CLEO: Fundamental Science 2026, Long Beach, CA 2026.

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