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Quantum Hall resistance standard in graphene devices under relaxed experimental conditions

机译:宽松实验条件下石墨烯器件的量子霍尔电阻标准

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摘要

The quantum Hall effect provides a universal standard for electrical resistance that is theoretically based on only the Planck constant h and the electron charge e. Currently, this standard is implemented in GaAs/AlGaAs, but graphene's electronic properties have given hope for a more practical device. Here, we demonstrate that the experimental conditions necessary for the operation of devices made of high-quality graphene grown by chemical vapour deposition on silicon carbide can be extended and significantly relaxed compared with those for state-of-the-art GaAs/AlGaAs devices. In particular, the Hall resistance can be accurately quantized to within 1 x 10(-9) over a 10 T wide range of magnetic flux density, down to 3.5 T, at a temperature of up to 10 K or with a current of up to 0.5 mA. This experimental simplification highlights the great potential of graphene in the development of user-friendly and versatile quantum standards that are compatible with broader industrial uses beyond those in national metrology institutes. Furthermore, the measured agreement of the quantized Hall resistance in graphene and GaAs/AlGaAs, with an ultimate uncertainty of 8.2 x 10(-11), supports the universality of the quantum Hall effect. This also provides evidence of the relation of the quantized Hall resistance with h and e, which is crucial for the new Systsme International d'unites to be based on fixing such fundamental constants of nature.
机译:量子霍尔效应为电阻提供了通用标准,该标准理论上仅基于普朗克常数h和电子电荷e。目前,该标准是在GaAs / AlGaAs中实现的,但是石墨烯的电子性能为更实用的器件带来了希望。在这里,我们证明,与最先进的GaAs / AlGaAs器件相比,由化学气相沉积在碳化硅上生长的高质量石墨烯制成的器件的运行所必需的实验条件可以得到扩展和明显放松。特别是,在温度高达10 K或电流高达10 K的情况下,在10 T宽的磁通量密度范围(低至3.5 T)内,霍尔电阻可以精确地量化到1 x 10(-9)以内0.5毫安这种实验上的简化突显了石墨烯在开发用户友好型通用量子标准方面的巨大潜力,该标准可与国家计量机构以外的更广泛的工业用途兼容。此外,在石墨烯和GaAs / AlGaAs中量化霍尔电阻的实测一致性(最终不确定度为8.2 x 10(-11))支持量子霍尔效应的普遍性。这也提供了量化的霍尔电阻与h和e的关系的证据,这对于新的Systsme International d'units基于固定这样的基本自然常数至关重要。

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