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Structural and nonlinear optical properties of self-assembled SnO2-doped silicon nanorings formed by pulsed laser ablation

机译:脉冲激光烧蚀形成的自组装SnO2掺杂硅纳米环的结构和非线性光学性质

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SnO2-doped Si nanorings with an outer diameter of 25 nm and an average width of 5 nm are grown by pulsed laser deposition. Atomic force microscopy reveals several interesting self-assembling forms of polycrystalline as well as an amorphous type of silicon nanorings. Depending on the width of the ring, the optical bandgap and photoluminescence can be tuned from the near infrared (1.38 eV) to the ultraviolet (3.02 eV), giving evidence for the strong quantum confinement effect along the width of ringlike quantum states. From Z-scan studies, the two-photon absorption coefficient is determined to be 2.2x10(-6) m/W. (C) 2008 The Electrochemical Society.
机译:通过脉冲激光沉积来生长具有25nm的外径和5nm的平均宽度的SnO 2掺杂的Si纳米环。原子力显微镜揭示了几种有趣的自组装形式的多晶以及无定形类型的硅纳米环。根据环的宽度,可以将光学带隙和光致发光从近红外(1.38 eV)调整到紫外(3.02 eV),为沿着环形量子态宽度的强量子约束效应提供了证据。根据Z扫描研究,确定了两个光子的吸收系数为2.2x10(-6)m / W。 (C)2008年电化学学会。

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