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Controlling hybrid nonlinearities in transparent conducting oxides via two-colour excitation

机译:通过双色激发控制透明导电氧化物中的混合非线性

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摘要

Nanophotonics and metamaterials have revolutionized the way we think about optical space (ε,μ), enabling us to engineer the refractive index almost at will, to confine light to the smallest of the volumes, and to manipulate optical signals with extremely small footprints and energy requirements. Significant efforts are now devoted to finding suitable materials and strategies for the dynamic control of the optical properties. Transparent conductive oxides exhibit large ultrafast nonlinearities under both interband and intraband excitations. Here we show that combining these two effects in aluminium-doped zinc oxide via a two-colour laser field discloses new material functionalities. Owing to the independence of the two nonlinearities, the ultrafast temporal dynamics of the material permittivity can be designed by acting on the amplitude and delay of the two fields. We demonstrate the potential applications of this novel degree of freedom by dynamically addressing the modulation bandwidth and optical spectral tuning of a probe optical pulse.
机译:纳米光子学和超材料已经彻底改变了我们对光学空间(ε,μ)的思考方式,使我们能够随意设计折射率,将光限制在最小的体积内,并以极小的占地面积和能量来操纵光信号。要求。现在,人们致力于寻找合适的材料和策略来动态控制光学性能。透明导电氧化物在带间和带内激励下均表现出较大的超快非线性。在这里,我们表明,通过双色激光场在掺铝的氧化锌中结合这两种效应,揭示了新的材料功能。由于这两个非线性的独立性,可以通过作用于两个场的振幅和延迟来设计材料介电常数的超快速时间动力学。我们通过动态解决调制带宽和探测光脉冲的光谱调谐来证明这种新颖的自由度的潜在应用。

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