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Nanostructured interior of laser-induced wires in diamond

机译:钻石中的激光诱导导线的纳米结构内部

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摘要

The paper considers the internal structure and electrical properties of conductive wires formed inside single crystal diamond by picosecond laser pulses under different processing conditions. Mechanically polished high-quality longitudinal sections of the wires were carefully examined using scanning electron microscopy, scanning spreading resistance microscopy, and Raman spectroscopy. It has been found that the interior of the wires consists of similar to 150-nm-thick sp(2) sheets forming a conductive network inside the original diamond matrix. The sp(2) sheets are clustered in segments distributed quasi-periodically along the wire. Both the velocity of the laser focus translation and the pulse energy have been found to influence the thickness of the sp2 sheets and spatial arrangement of the segments. The relationship between the internal structure of the wires and their integrated resistivity is discussed.
机译:本文在不同的加工条件下通过PICOSECOND激光脉冲内部形成在单晶金刚石内部形成的导线的内部结构和电性能。 使用扫描电子显微镜,扫描扩散性显微镜和拉曼光谱仔细检查电线的机械抛光的高质量纵向部分。 已经发现,电线内部包括类似于150nm厚的SP(2)片,在原始金刚石矩阵内形成导电网络。 SP(2)片材在沿线分布在准周期性的区段中聚集。 已经发现激光聚焦翻译的速度和脉冲能量的速度影响SP2片材的厚度和区段的空间排列。 讨论了线的内部结构与其集成电景之间的关系。

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