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The diamond superconducting quantum interference device

机译:金刚石超导量子干涉仪

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Diamond is an electrical insulator in its natural form. However, when doped with boron above a critical level (~0.25 atom %) it can be rendered superconducting at low temperatures with high critical fields. Here we present the realization of a micrometer-scale superconducting quantum interference device (μ-SQUID) made from nanocrystalline boron-doped diamond (BDD) films. Our results demonstrate that μ-SQUIDs made from superconducting diamond can be operated in magnetic fields as large as 4 T independent of the field direction. This is a decisive step toward the detection of quantum motion in a diamond-based nanomechanical oscillator.
机译:钻石是天然形式的电绝缘体。但是,当掺入高于临界水平(约0.25原子%)的硼时,可以在低温下以高临界场使其超导。在这里,我们介绍由纳米晶掺硼金刚石(BDD)薄膜制成的微米级超导量子干涉装置(μ-SQUID)的实现。我们的结果表明,由超导金刚石制成的μ-SQUID可以在不超过磁场方向的最大4 T磁场中工作。这是在基于金刚石的纳米机械振荡器中检测量子运动的决定性步骤。

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