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Optical control of resonances in temporally symmetry-broken metasurfaces

delete2025-08-06
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OA
AI
A
Andreas Aigner
T
Thomas Possmayer
T
Thomas Weber
A
A. A. Antonov
L
Leonardo de S. Menezes
S
Stefan A. Maier *
A
Andreas Tittl *
DOI:10.1038/s41586-025-09363-7delete
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Abstract

Abstract

En 中文
Tunability in active metasurfaces has mainly relied on shifting the resonance wavelength1,2 or increasing material losses3,4 to spectrally detune or quench resonant modes, respectively. However, both methods face fundamental limitations, such as a limited Q factor and near-field enhancement control and the inability to achieve resonance on–off switching by completely coupling and decoupling the mode from the far field. Here we demonstrate temporal symmetry breaking in metasurfaces through ultrafast optical pumping, providing an experimental realization of radiative-loss-driven resonance tuning, allowing resonance creation, annihilation, broadening and sharpening. To enable this temporal control, we introduce restored symmetry-protected bound states in the continuum. Even though their unit cells are geometrically asymmetric, coupling to the radiation continuum remains fully suppressed, which, in this work, is achieved by two equally strong antisymmetric dipoles. By using selective Mie-resonant pumping in parts of these unit cells, we can modify their dipole balance to create or annihilate resonances as well as tune the linewidth, amplitude and near-field enhancement, leading to potential applications in optical and quantum communications, time crystals and photonic circuits. The ultrafast optical control of resonances in temporally symmetry-broken metasurfaces allows resonances to be created, annihilated or programmably manipulated, which is useful for applications that require active real-time tunability.
Keywords:
resonance tuning
metasurfaces
temporal symmetry breaking
ultrafast optical pumping
bound states in the continuum

Journal

Nature cover
Nature
IF:
48.5
Papers:
1.8W
Citations:
96.5W

Organization

M
Monash University
Scholars:
5.4W
Papers: 5.4W
Citations: 79
L
ludwig-maximilians-university munich
Scholars:
177
Papers: 56
Citations: 0