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Ultrafast nonlinear and strong-field phenomena in silicon-loaded nanoplasmonic waveguides

机译:载硅纳米等离子体波导中的超快非线性和强场现象

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In this work, we summarize recent findings on ultrafast nonlinear and strong-field phenomena in silicon-loaded nanoplasmonic waveguides. Coupling ultrafast λ = 1.55μm pulses into such structures gives rise to both high-efficiency third harmonic generation (THG) and ponderomotive electron acceleration. We show THG efficiencies of 2.3 × 10~(-5) in waveguides with an ultracompact footprint of 0.43μm~2, resulting in visible green light emission. Remarkably, broadband white light emission is observed as well. This phenomenon is found to originate from an electron avalanche induced by the ponderomotive acceleration of electrons generated via two photon absorption. Thus, this nanoplasmonic device presents a versatile platform for realizing ultrafast nonlinear phenomenon within all-optical circuitry.
机译:在这项工作中,我们总结了硅载纳米等离子体波导中超快非线性和强场现象的最新发现。将超快的λ=1.55μm脉冲耦合到此类结构中,会同时产生高效的三次谐波生成(THG)和纯电子加速。我们在具有超紧凑占位面积0.43μm〜2的波导中显示THG效率为2.3×10〜(-5),导致可见的绿色光发射。值得注意的是,也观察到宽带白光发射。发现这种现象是由于通过两个光子吸收产生的电子的质子加速引起的电子雪崩引起的。因此,这种纳米等离子体设备提供了一个通用的平台,用于在全光学电路中实现超快速非线性现象。

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