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Enhanced nonlinear optics in resonant GaAs gratings: harmonic generation and optical bistability

机译:谐振GaAs光栅中增强的非线性光学器件:谐波产生和光学双稳态

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We present a study on nonlinear optical processes in GaAs gratings, made by perforating a single layer of GaAs with very narrow slits. Large enhancement of conversion efficiency, for both second and third harmonic generation, is predicted when a TE-polarized pump field excites the guided mode resonances of the grating. At the onset of these modes the spectrum near the pump wavelength shows abrupt changes of linear transmission and reflection that follow a typical Fano-like shape. Under these circumstances, the grating provides dramatic enhancement of local fields and fosters favorable conditions for harmonic generation processes, even in regimes of strong linear absorption al the harmonic wavelengths. In a GaAs grating pumped at 1064nm, we predict second (532nm) and third (354nm) harmonic conversion efficiencies several orders of magnitude larger than conversion rates achievable in either bulk or etalon structures made of the same material. These efficiencies are not influenced by linear absorption, and they are unrelated to grating thickness. We discuss the influence of self-phase modulation on the harmonic generation conversion efficiencies. Finally, we also analyze self phase modulation effects on resonant gratings tuning the input signal at guided mode resonances, demonstrating the possibility of triggering optical bistability at relatively low switching intensities.
机译:我们对GaAs光栅中的非线性光学过程进行了研究,该过程是通过在GaAs的单层上开有很窄的狭缝来进行的。当TE极化的泵浦场激发光栅的导模共振时,可以预测对于二次谐波和三次谐波的转换效率将大大提高。在这些模式开始时,泵浦波长附近的光谱显示出线性透射和反射的突变,这些变化遵循典型的Fano类形状。在这种情况下,即使在谐波波长强烈线性吸收的情况下,光栅也可以显着增强局部场并为谐波产生过程创造有利条件。在以1064nm抽运的GaAs光栅中,我们预测第二次(532nm)和第三次(354nm)谐波转换效率要比相同材料制成的块状或标准具结构所能达到的转换率高几个数量级。这些效率不受线性吸收的影响,并且与光栅厚度无关。我们讨论了自相位调制对谐波产生转换效率的影响。最后,我们还分析了自相位调制对谐振光栅在导模谐振下调谐输入信号的影响,证明了在相对较低的开关强度下触发光学双稳态的可能性。

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