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Controlled synthesis of high quality microano-diamonds by microwave plasma chemical vapor deposition

机译:微波等离子体化学气相沉积控制合成高质量的微/纳米金刚石

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摘要

Diamond containing engineered color centers is rapidly becoming a medium of choice for quantum information applications. Many of the dramatic recent results in this field have been demonstrated in diamond nano-crystals. Here we demonstrate controlled synthesis of spatially isolated high quality microand nano-diamonds using a microwave plasma chemical vapor deposition technique (MPCVD). The growth from nano-seeds rather than other nucleation techniques allows improved control over the final size of the crystals and the density of the crystals on the substrate. The growth rate of the diamond crystals was found to be 22 nm/min. Various parameters of the growth sequence were studied and the microwave power density was found to have the major influence on the crystal morphology, with the best quality diamond formed under conditions of relatively high pressure and plasma density. Our ability to control size, dispersion and levels of perfection constitutes an enabler for future quantum information applications utilizing diamond color centers.
机译:包含钻石的工程色心正迅速成为量子信息应用程序的首选媒介。最近在金刚石纳米晶体中已经证明了该领域的许多引人注目的结果。在这里,我们演示了使用微波等离子体化学气相沉积技术(MPCVD)进行空间分离的高质量微米和纳米金刚石的受控合成。来自纳米种子而不是其他成核技术的生长允许更好地控制晶体的最终尺寸和衬底上晶体的密度。发现金刚石晶体的生长速率为22nm / min。研究了生长顺序的各种参数,发现微波功率密度对晶体形态具有主要影响,在相对较高的压力和等离子体密度条件下形成了质量最好的金刚石。我们控制尺寸,色散和完美度的能力为将来利用钻石色心的量子信息应用提供了支持。

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