Cardiff University | Prifysgol Caerdydd ORCA
Online Research @ Cardiff 
WelshClear Cookie - decide language by browser settings

Revealing the resonant physics of open photonic time crystals

Canós Valero, Adrià, Gladyshev, Sergei, Globosits, David, Rotter, Stefan, Muljarov, Egor A. ORCID: https://orcid.org/0000-0002-2878-4148 and Weiss, Thomas 2026. Revealing the resonant physics of open photonic time crystals. Laser and Photonics Reviews 10.1002/lpor.71318

[thumbnail of lpor.71318.pdf] PDF - Published Version
Download (3MB)

Abstract

Photonic time crystals (PTCs) are media whose permittivity is modulated periodically in time, enabling momentum bandgaps and parametric amplification of light. Their realization at the nanoscale can revolutionize the study of light‐matter interactions. While prior works have focused on spatially uniform or periodic PTCs, practical implementations inevitably involve modulating complex nanostructures, whose dynamics are dominated by resonant modes that radiate into the environment. While there exist studies investigating specific geometries, the general physical mechanisms underlying the response of such “open” PTCs remain largely unexplored. Here, we establish a first‐principles framework that captures the resonant behavior of open PTCs with arbitrary geometry. We reveal a number of unique features, such as the emergence of infinite ladders of “replica” radiative eigenmodes and a universal scaling law for the modulated resonance frequencies and the radiative losses. Contrary to conventional wisdom, we show that parametric amplification in these systems arises from discrete resonant processes, rather than from bandgap physics. Leveraging our new insights, we design parametric resonances in a realistic microcavity as well as in subwavelength nanoresonators. Our results establish a foundation for understanding and engineering open PTCs, with implications for nanophotonics, quantum optics, and other areas of wave physics.

Item Type: Article
Date Type: Published Online
Status: In Press
Schools: Schools > Physics and Astronomy
Additional Information: License information from Publisher: LICENSE 1: URL: http://creativecommons.org/licenses/by/4.0/
Publisher: Wiley-VCH Verlag
ISSN: 1863-8880
Date of First Compliant Deposit: 1 June 2026
Date of Acceptance: 11 May 2026
Last Modified: 01 Jun 2026 10:45
URI: https://orca.cardiff.ac.uk/id/eprint/187307

Actions (repository staff only)

Edit Item Edit Item

Downloads

Downloads per month over past year

View more statistics