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Metal nanoparticle precipitation in periodic arrays in Au_(2)O-doped glass by two interfered femtosecond laser pulses

机译:两个受干扰的飞秒激光脉冲在Au_(2)O掺杂玻璃中以周期性阵列的形式沉积金属纳米粒子

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We report on the precipitation control of Au nanoparticles in periodic arrays in silicate glass. Au_(2)O-doped glass samples were first irradiated by two 800 nm interfered femtosecond laser pulses at room temperature and then heat treated at 550℃ for the Au nanoparticle precipitation in the laser irradiation areas. One-dimensional periodic arrays of the Au nanoparticles were controlled by changing the pulse energy and the incident angle between the interfered laser pulses. The smallest dimension in the obtained arrays was a width of 300 nm. The mechanism of the metal nanoparticle precipitation by this technique was discussed. Only two pulses are required to encode these periodic microstructures, which are applicable to emerging nanostructure devices such as optical memory with ultrahigh storage density, micrograting with high diffractive efficiency and integrative micro-optical switches.
机译:我们报告了硅酸盐玻璃中周期性阵列中金纳米颗粒的沉淀控制。首先在室温下用两个800 nm的飞秒激光脉冲对掺Au_(2)O的玻璃样品进行辐照,然后在550℃下进行热处理,以使Au纳米粒子在激光辐照区沉淀。通过改变脉冲能量和受干扰激光脉冲之间的入射角来控制Au纳米粒子的一维周期阵列。所得阵列中的最小尺寸为300nm的宽度。讨论了该技术沉淀金属纳米颗粒的机理。只需两个脉冲即可对这些周期性微结构进行编码,适用于新兴的纳米结构设备,例如具有超高存储密度的光学存储器,具有高衍射效率的微光栅和集成微光学开关。

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