Laser Synthesis of Nanocomposite Cu:Al2O3 thin Films for Nonlinear Optical Switching

J. M. Ballesteros, C. Afonso, J. Solís, R. Serna
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Abstract

Metal nanocrystals embedded in dielectric matrices have been the subject of intense research during the last few years as promising candidates for all-optical switching applications. However, the lack of suitable techniques to produce these materials in waveguide configuration has hindered the use of nanocomposites in technological applications. Pulsed laser deposition (PLD) is a recently developed thin film technique that offers a new way to obtain and control the size and shape of the nanocrystals, thus introducing new possibilities to engineer the nonlinear optical parameters of the material. This work reports on the production of Cu nanocrystals embedded in amorphous Al2O3 matrix with a large nonlinear refractive index and a significantly reduced nonlinear absorption. The influence of the metal content and the measuring conditions on the nonlinear response of the nanocomposite films has been also analysed.
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非线性光开关用纳米复合Cu:Al2O3薄膜的激光合成
在过去的几年里,嵌入在介质矩阵中的金属纳米晶体作为全光开关应用的有前途的候选者,一直是研究的热点。然而,缺乏合适的技术来生产这些波导结构的材料,阻碍了纳米复合材料在技术应用中的使用。脉冲激光沉积(PLD)是最近发展起来的一种薄膜技术,它提供了一种获得和控制纳米晶体尺寸和形状的新方法,从而为设计材料的非线性光学参数提供了新的可能性。本文报道了嵌入在非晶Al2O3基体中的Cu纳米晶体的生产,该晶体具有较大的非线性折射率和显著降低的非线性吸收。分析了金属含量和测量条件对纳米复合薄膜非线性响应的影响。
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