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Nonlinear absorption tuning by composition control in bimetallic plasmonic nanoprism arrays

机译:非线性吸收优化组合控制在双金属电浆nanoprism数组

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摘要

The nonlinear absorption properties of bidimensional arrays of Au-Ag bilayered nanoprisms have been investigated by z-scan measurements as a function of the bimetallic nanoprism composition. A tunable ps laser system was used to excite the ultrafast, electronic nonlinear response matching the laser wavelength with the quadrupolar surface plasmon resonances, in the visible range, of each nanoprism array. Due to the strong electromagnetic field confinement effects at the nanoprism tips, demonstrated by finite element method simulations, these nanosystems proved to have enhanced nonlinear optical properties. Moreover, a tunable changeover from reverse saturable absorption (RSA) to saturable absorption (SA) can be obtained by properly controlling the bimetallic composition of the nanoprisms, without modifying the overall morphology of the nanosystems. This capability makes these nanosystems extremely interesting for the realization of solid-state nanophotonic devices with enhanced ultrafast nonlinear optical properties.
机译:的非线性吸收特性Au-Ag双层二维的数组研究了纳米棱柱z-scan测量作为双金属的函数nanoprism组成。被用来激发超快,电子非线性响应匹配激光波长四极表面等离子体共振,在可见的范围内,每个nanoprism数组。由于强烈的电磁场约束影响nanoprism技巧,证明了有限元方法这些纳米系统模拟,证明了增强的非线性光学性质。一个可调的转换从反向饱和吸收(RSA)饱和吸收(SA)通过适当的控制双金属纳米棱柱的组成,没有修改的整体形态纳米系统。纳米系统非常有趣的实现固态纳米光子设备与增强超快非线性光学属性。

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