Nonlinear optical properties of colloidal ZnO-Au nanostructures for optical limiting applications

Sarah L. Walden, Joseph F. S. Fernando, E. Waclawik, M. Shortell, E. Jaatinen
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Abstract

The nonlinear response of zinc oxide and zinc oxide-gold hybrid colloidal nanostructures to 532 nm nanosecond pulses was investigated. The z-scan technique was used to measure the nonlinear absorption of zinc oxide, zinc-oxide: gold hybrids and mixed colloids of zinc-oxide and gold. Despite similar zinc oxide concentrations, the colloids containing gold nanoparticles displayed stronger intensity dependent nonlinear absorption with optical limiting thresholds for the three samples of 35 J/cm2, 6.1 J/cm2 and 4.1 J/cm2, respectively. Therefore, by combining gold with zinc-oxide to form hybrid nanostructures or by simply mixing gold and zinc-oxide nanostructures together, the optical limiting threshold is reduced which is advantageous for optical limiting applications.
用于光学限制应用的胶体ZnO-Au纳米结构的非线性光学性质
研究了氧化锌和氧化锌-金杂化胶体纳米结构对532 nm纳秒脉冲的非线性响应。采用z扫描技术测量了氧化锌、氧化锌-金杂化物和氧化锌-金混合胶体的非线性吸收。尽管氧化锌浓度相似,但含金纳米颗粒的胶体在35 J/cm2、6.1 J/cm2和4.1 J/cm2的三种样品中表现出更强的强度依赖非线性吸收。因此,通过将金与氧化锌结合形成杂化纳米结构或简单地将金与氧化锌纳米结构混合在一起,可以降低光限制阈值,有利于光限制应用。
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