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Multiresonant Broadband Optical Antennas As Efficient Tunable Nanosources of Second Harmonic Light

机译:多谐振宽带光天线作为二次谐波光的高效可调谐纳米源

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摘要

We report the experimental realization of efficient tunable nanosources of second harmonic light with individual multiresonant log-periodic optical antennas. By designing the nanoantenna with a bandwidth of several octaves, simultaneous enhancement of fundamental and harmonic fields is observed over a broad range of frequencies, leading to a high second harmonic conversion efficiency, together with an effective second order susceptibility within the range of values provided by widespread inorganic ciystals. Moreover, the geometrical configuration of the nanoantenna makes the generated second harmonic signal independent from the polarization of the fundamental excitation. These results open new possibilities for the development of efficient integrated nonlinear nanodevices with high frequency tunability.
机译:我们报告了通过单独的多共振对数周期光学天线对二次谐波光进行有效可调的纳米源的实验实现。通过设计具有数个八度音阶带宽的纳米天线,可以在较宽的频率范围内观察到基本场和谐波场的同时增强,从而导致较高的二次谐波转换效率,以及在提供的值范围内的有效二阶磁化率。广泛的无机结晶。此外,纳米天线的几何构造使得所产生的二次谐波信号与基本激励的极化无关。这些结果为开发具有高频可调性的高效集成非线性纳米器件开辟了新的可能性。

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