Departamento de Óptica, División Física Aplicada, CICESE, Ensenada, BC, México.
Nanoscale. 2018 Mar 15;10(11):5182-5190. doi: 10.1039/c7nr08948a.
In this work we present the study of the ultra-fast dynamics of the nonlinear optical response of a honeycomb array of silver triangular nanoprisms, performed using a femtosecond pulsed laser tuned with the dipolar surface plasmon resonance of the nanoarray. Nonlinear absorption and refraction, and their time-dependence, were explored using the z-scan and time-resolved excite-probe techniques. Nonlinear absorption is shown to change sign with the input irradiance and the behavior was explained on the basis of a three-level model. The response time was determined to be in the picosecond regime. A technique based on a variable frequency chopper was also used in order to discriminate the thermal and electronic contributions to the nonlinearity, which were found to have opposite signs. All these findings propel the investigated nanoprism arrays as good candidates for applications in advanced ultra-fast nonlinear nanophotonic devices.
在这项工作中,我们使用调谐到纳米阵列的偶极子表面等离激元共振的飞秒脉冲激光,研究了银三角纳米棱镜蜂窝状阵列的非线性光学响应的超快动力学。我们使用 z 扫描和时间分辨激发探针技术研究了非线性吸收和折射及其时间依赖性。结果表明,非线性吸收随输入辐照度而改变符号,其行为可以根据三能级模型来解释。响应时间确定为皮秒级。为了区分非线性中的热和电子贡献,我们还使用了基于可变频率斩波器的技术,发现它们的符号相反。所有这些发现都使得所研究的纳米棱镜阵列成为应用于先进超快非线性纳米光子器件的良好候选者。