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Graphene Devices for Tabletop and High-Current Quantized Hall Resistance Standards

机译:用于桌面和大电流量化霍尔电阻标准品的石墨烯器件

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摘要

We report the performance of a quantum Hall resistance standard based on epitaxial graphene maintained in a 5-T tabletop cryocooler system. This quantum resistance standard requires no liquid helium and can operate continuously, allowing year-round accessibility to quantized Hall resistance measurements. The ν = 2 plateau, with a value of RK/2, also seen as RH, is used to scale to 1 kΩ using a binary cryogenic current comparator (BCCC) bridge and a direct current comparator (DCC) bridge. The uncertainties achieved with the BCCC are such as those obtained in the state-of-the-art measurements using GaAs-based devices. BCCC scaling methods can achieve large resistance ratios of 100 or more, and while room temperature DCC bridges have smaller ratios and lower current sensitivity, they can still provide alternate resistance scaling paths without the need for cryogens and superconducting electronics. Estimates of the relative uncertainties of the possible scaling methods are provided in this report, along with a discussion of the advantages of several scaling paths. The tabletop system limits are addressed as are potential solutions for using graphene standards at higher currents.
机译:我们报告了基于5-T台式冷冻机系统中保持的外延石墨烯的量子霍尔电阻标准的性能。该量子电阻标准不需要液氦,并且可以连续运行,从而可以全年访问量化的霍尔电阻测量值。使用二进制低温电流比较器(BCCC)电桥和直流比较器(DCC)电桥,将ν= 2平稳段,其值RK / 2,也称为RH,可缩放至1kΩ。 BCCC实现的不确定性,例如使用基于GaAs的设备进行的最新测量中获得的不确定性。 BCCC缩放方法可以实现100或更大的大电阻比,而室温DCC桥具有较小的比值和更低的电流灵敏度,它们仍可以提供替代的电阻缩放路径,而无需冷却剂和超导电子器件。本报告提供了可能的缩放方法的相对不确定性的估计,并讨论了几种缩放路径的优点。解决了桌面系统限制以及在更高电流下使用石墨烯标准品的潜在解决方案。

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