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Giant nonlinear optical activity in a plasmonic metamaterial

机译:等离子体超材料中的巨大非线性光学活性

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In 1950, a quarter of a century after his first-ever nonlinear optical experiment when intensity-dependent absorption was observed in uranium-doped glass, Sergey Vavilov predicted that birefringence, dichroism and polarization rotatory power should be dependent on light intensity. It required the invention of the laser to observe the barely detectable effect of light intensity on the polarization rotatory power of the optically active lithium iodate crystal, the phenomenon now known as the nonlinear optical activity, a high-intensity counterpart of the fundamental optical effect of polarization rotation in chiral media. Here we report that a plasmonic metamaterial exhibits nonlinear optical activity 30 million times stronger than lithium iodate crystals, thus transforming this fundamental phenomenon of polarization nonlinear optics from an esoteric phenomenon into a major effect of nonlinear plasmonics with potential for practical applications.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:1950年,即在他的首次非线性光学实验之后的四分之一个世纪,当时在掺铀玻璃中观察到强度依赖的吸收,谢尔盖·瓦维洛夫(Sergey Vavilov)预测双折射,二向色性和偏振旋转功率应取决于光强度。要求激光器的发明观察光强对旋光性碘酸锂晶体的偏振旋转功率几乎没有可检测到的影响,这种现象现在被称为非线性光学活性,是高强度的基本光学效应的对应物。手性介质中的极化旋转。在这里,我们报道等离子超材料的非线性光学活性比碘酸锂晶体强3000万倍,从而将这种偏振非线性光学的基本现象从深奥的现象转变为非线性等离子的主要影响,具有实际应用的潜力。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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