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Enhancement of second harmonic generation in nanocrystalline SiC films based natural microcavities

机译:基于自然微腔的纳米晶SiC薄膜中二次谐波产生的增强

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摘要

We explore second harmonic generation (SHG) features of nanocrystalline SiC films based natural microcavities (MC) with resonance modes in the vicinity of the fundamental radiation at 1064 nm wavelength for nanocrystalline films of 24R, 27R polytypes characterized by high radiation doubling frequency coefficients. The natural walls of the SiC NC serve a role of cavities. To learn the nonlinear resonance features of the MC near the fundamental wavelength 1064 nm three series of the nc-SiC films indicated as 7495, 7517 and 7522 with thicknesses varying within 250-600 nm were fabricated. The role of the coherent and non-coherent contributions with taking into an account of cavity resonance modes is discussed. The giant increase of the SHG was achieved which may be used for further fabrication of the frequency transducers and nonlinear optical triggers. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们探索了基于自然微腔(MC)的纳米晶SiC薄膜的二次谐波产生(SHG)特征,该共振模式在1064 nm波长的基本辐射附近,对具有高辐射倍频系数的24R,27R多晶型纳米晶薄膜具有共振模式。 SiC NC的天然壁起着空腔的作用。为了了解在基波波长1064 nm附近MC的非线性共振特征,制作了3个系列的nc-SiC薄膜,分别表示为7495、7517和7522,厚度在250-600 nm之间变化。讨论了考虑腔谐振模式的相干和非相干贡献的作用。 SHG的大幅增加可用于进一步制造频率传感器和非线性光学触发器。 (C)2016 Elsevier B.V.保留所有权利。

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