English

Fabrication of uniformly doped graphene quantum Hall arrays with multiple quantized resistance outputs

Mesoscale and Nanoscale Physics 2022-06-13 v1

Abstract

In this work, limiting factors for developing metrologically useful arrays from epitaxial graphene on SiC are lifted with a combination of centimeter-scale, high-quality material growth and the implementation of superconducting contacts. Standard devices for metrology have been restricted to having a single quantized value output based on the ν\nu = 2 Landau level. With the demonstrations herein of devices having multiple outputs of quantized values available simultaneously, these versatile devices can be used to disseminate the ohm globally. Such devices are designed to give access to quantized resistance values over the range of three orders of magnitude, starting as low as the standard value of approximately 12.9 kΩ\Omega and reaching as high as 1.29 MΩ\Omega. Several experimental methods are used to assess the quality and versatility of the devices, including standard lock-in techniques and Raman spectroscopy.

Keywords

Cite

@article{arxiv.2206.05098,
  title  = {Fabrication of uniformly doped graphene quantum Hall arrays with multiple quantized resistance outputs},
  author = {Swapnil M. Mhatre and Ngoc Thanh Mai Tran and Heather M. Hill and Ching-Chen Yeh and Dipanjan Saha and David B. Newell and Angela R. Hight Walker and Chi-Te Liang and Randolph E. Elmquist and Albert F. Rigosi},
  journal= {arXiv preprint arXiv:2206.05098},
  year   = {2022}
}