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The wavelength-dependent non-linear absorption and refraction of Au25 and Au38 monolayer-protected clusters

机译:wavelength-dependent非线性吸收折射Au25和Au38 monolayer-protected集群

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摘要

In the past decade, the structural and electronic properties of monolayer-protected metal clusters, which can be produced size-selected in macroscopic amounts, have received a lot of attention. Their great potential for optical applications has been identified. In the high intensity regime, monolayer-protected metal clusters show pronounced nonlinear absorption and refraction. Naturally, these phenomena are wavelength-dependent, however, such dependence is largely unexplored. Here, we quantify the wavelength-dependent non-linear optical absorption and refraction cross sections of atomically precise Au25(DDT)18 and Au38(DDT)24 clusters, using the z-scan technique in combination with a tunable nanosecond laser source. Qualitatively different non-linear optical phenomena were found to take place at different excitation wavelengths (two-photon and excited-state absorption, intensity saturation and non-linear refraction). Both clusters have high nonlinear absorption cross sections at 532 nm, and present a (local) maximum at 640 nm, together with a maximum in the absorption saturation. The nonlinear refraction is always negative for Au25(DDT)18, while it changes sign for Au38(DDT)24. Depending on the wavelength, the underlying mechanism of the nonlinear absorption effects is two-photon absorption or excited state absorption. The obtained very high nonlinear cross sections, on the order of 107–109 GM, demonstrate the great potential of those clusters as nonlinear absorption or refraction materials in optical applications.
机译:在过去的十年中,结构和电子monolayer-protected金属簇的性质,能产生size-selected宏观量,得到了很多的关注。应用程序已被确认。强度政权,monolayer-protected金属集群显示出明显的非线性吸收和折射。wavelength-dependent,然而,这样的依赖进行调查。wavelength-dependent非线性光学吸收和折射的横截面自动精确Au25 (DDT) 18和Au38 (DDT) 24使用z-scan技术集群,结合一个可调的纳秒激光源。被发现在光学现象不同激发波长(双光子和激发态吸收强度饱和和非线性折射)。高非线性吸收横截面为532nm,和现在(本地)最大在640海里,一起的最大吸收饱和度。虽然不利于Au25 (DDT) 18日变化的迹象Au38 (DDT) 24。底层机制的非线性吸收影响双光子吸收或激发态吸收。横截面,在107 - 109年通用汽车的顺序,证明这些集群的巨大潜力非线性吸收和折射材料在光学应用。

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