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Linear and nonlinear optical absorption in copper nanocluster-glass composites

机译:铜纳米团簇-玻璃复合材料的线性和非线性光学吸收

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摘要

Copper nanoclusters have been formed in fused silica glasses under 100 keV and 200 keV Cu~+ ion implantations. UV-Vis spectroscopy measurements have revealed prominent linear absorption bands at characteristic surface plasmon resonance (SPR) frequency signifying the appreciable formation of copper colloids in glass matrices even without thermal treatments. Ion-induced colloid formation in glasses without thermal treatments is probably the first time observation in the present study. Subsequent annealing of the implanted samples has resulted in the further enhancement of the absorption bands. Formation of copper nanoclusters without thermal annealing can be attributed to the relatively high mobility of copper atoms even at ambient conditions. The transmittance measurements made by Z-scan technique have revealed saturable absorption signifying the nonlinear optical responses of the metal nanocluster-glass composites.
机译:在熔融石英玻璃中,在100 keV和200 keV的Cu〜+离子注入下形成了铜纳米团簇。 UV-Vis光谱测量发现在特征表面等离子体共振(SPR)频率处存在明显的线性吸收带,这表明即使不进行热处理,玻璃基质中铜胶体也会明显形成。未经热处理的玻璃中离子诱导的胶体形成可能是本研究中的首次观察。植入样品的随后退火导致吸收带的进一步增强。没有热退火就可以形成铜纳米团簇,这归因于即使在环境条件下铜原子的相对较高的迁移率。通过Z扫描技术进行的透射率测量已显示出可饱和的吸收,表示金属纳米簇-玻璃复合材料的非线性光学响应。

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