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首页> 外文期刊>Nature Communications >Single-crystal diamond nanomechanical resonators with quality factors exceeding one million
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Single-crystal diamond nanomechanical resonators with quality factors exceeding one million

机译:质量因子超过一百万的单晶金刚石纳米机械谐振器

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摘要

Diamond has gained a reputation as a uniquely versatile material, yet one that is intricate to grow and process. Resonating nanostructures made of single-crystal diamond are expected to possess excellent mechanical properties, including high-quality factors and low dissipation. Here we demonstrate batch fabrication and mechanical measurements of single-crystal diamond cantilevers with thickness down to 85?nm, thickness uniformity better than 20?nm and lateral dimensions up to 240?μm. Quality factors exceeding one million are found at room temperature, surpassing those of state-of-the-art single-crystal silicon cantilevers of similar dimensions by roughly an order of magnitude. The corresponding thermal force noise for the best cantilevers is ~5·10?19?N?Hz?1/2 at millikelvin temperatures. Single-crystal diamond could thus directly improve existing force and mass sensors by a simple substitution of resonator material. Presented methods are easily adapted for fabrication of nanoelectromechanical systems, optomechanical resonators or nanophotonic devices that may lead to new applications in classical and quantum science.
机译:钻石作为一种用途广泛的独特材料而享有盛誉,但它的生长和加工过程错综复杂。由单晶金刚石制成的共振纳米结构有望具有出色的机械性能,包括高质量因子和低耗散性。在这里,我们演示了单晶金刚石悬臂的批量制造和机械测量,该悬臂的厚度低至85?nm,厚度均匀性优于20?nm,横向尺寸最大为240μm。在室温下发现的质量因子超过一百万,比类似尺寸的最新单晶硅悬臂梁的质量因子大了一个数量级。最佳悬臂的相应热力噪声在毫ikelvin温度下为〜5·10 ?19 ?N?Hz ?1/2 。因此,单晶金刚石可以通过简单地替代谐振器材料来直接改善现有的力和质量传感器。提出的方法很容易适用于制造纳米机电系统,光机电谐振器或纳米光子器件,这可能会导致古典科学和量子科学的新应用。

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