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A Versatile Common Platform for Quantum Transport Measurements in Fluidic, Cryogenic, and In Situ Electron Microscopy Environments

Published online by Cambridge University Press:  05 August 2019

Jacob L. Swett*
Affiliation:
Department of Materials, University of Oxford, Oxford, United Kingdom
Ivan I. Kravchenko
Affiliation:
Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge, United States of America
O. E. Dyck
Affiliation:
Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge, United States of America
S. Jesse
Affiliation:
Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge, United States of America
J. A. Mol
Affiliation:
Department of Materials, University of Oxford, Oxford, United Kingdom School of Physics and Astronomy, Queen Mary University of London, London, United Kingdom
*
*Corresponding author: [email protected]

Abstract

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Type
Current and Emerging Microscopy for Quantum Information Sciences
Copyright
Copyright © Microscopy Society of America 2019 

References

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[2]Heerema, S. J., et al. Probing DNA translocations with inplane current signals in a graphene nanoribbon with a nanopore. ACS Nano 12.3, (2018).Google Scholar
[3]Dyck, O. E., et al. Building structures atom by atom via electron beam manipulation. Small, 14.28 (2018).Google Scholar
[4]Puczkarski, P., et al. Graphene nanoelectrodes for biomolecular sensing. J. Mater. Res. 32, (2017).Google Scholar
[5]Gehring, P., et al. Quantum interference in graphene nanoconstrictions. Nano Lett, 16.7, (2016).Google Scholar
[6]The authors thank Scott Retterer, Kevin Lester, Dayrl Briggs, Bernadeta Srijanto, and James Yates for their assistance with aspects of the fabrication and design.Google Scholar