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Direct observation of zero modes in a non-Hermitian optical nanocavity array 被引量:1
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作者 Flore Hentinger Melissa Hedir +5 位作者 Bruno Garbin Mathias Marconi Li Ge fabrice raineri Juan A.Levenson Alejandro M.Yacomotti 《Photonics Research》 SCIE EI CAS CSCD 2022年第2期574-586,共13页
Zero modes are symmetry protected ones whose energy eigenvalues have zero real parts. In Hermitian arrays, they arise as a consequence of the sublattice symmetry, implying that they are dark modes. In non-Hermitian sy... Zero modes are symmetry protected ones whose energy eigenvalues have zero real parts. In Hermitian arrays, they arise as a consequence of the sublattice symmetry, implying that they are dark modes. In non-Hermitian systems that naturally emerge in gain/loss optical cavities, particle-hole symmetry prevails instead;the resulting zero modes are no longer dark but feature π∕2 phase jumps between adjacent cavities. Here, we report on the direct observation of zero modes in a non-Hermitian three coupled photonic crystal nanocavities array containing quantum wells. Unlike the Hermitian counterparts, the observation of non-Hermitian zero modes upon single pump spot illumination requires vanishing sublattice detuning, and they can be identified through far-field imaging and spectral filtering of the photoluminescence at selected pump locations. We explain the zero-mode coalescence as a parity-time phase transition for small coupling. These zero modes are robust against coupling disorder and can be used for laser mode engineering and photonic computing. 展开更多
关键词 PUMP OPTICAL tuning
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Nonlinear gallium phosphide nanoscale photonics[Invited]
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作者 AUDE MARTIN SYLVAIN COMBRIE +3 位作者 ALFREDO DE ROSSI GREGOIRE BEAUDOIN ISABELLE SAGNES fabrice raineri 《Photonics Research》 SCIE EI 2018年第5期I0068-I0074,共7页
We introduce a nanoscale photonic platform based on gallium phosphide. Owing to the favorable material properties, peak power intensity levels of 50 GW∕cm^2 are safely reached in a suspended membrane. Consequently,th... We introduce a nanoscale photonic platform based on gallium phosphide. Owing to the favorable material properties, peak power intensity levels of 50 GW∕cm^2 are safely reached in a suspended membrane. Consequently,the field enhancement is exploited to a far greater extent to achieve efficient and strong light–matter interaction.As an example, parametric interactions are shown to reach a deeply nonlinear regime, revealing cascaded fourwave mixing leading to comb generation and high-order soliton dynamics. 展开更多
关键词 Invited Nonlinear gallium phosphide nanoscale photonics
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