64 citations · 161 across the 5 of their papers we have counts for
5 papers
Mechanical control of quantum transport in graphene
A. C. McRae, G. Wei, L. Huang +3
Two-dimensional materials (2DMs) are fundamentally electro-mechanical systems. Their environment unavoidably strains them and modifies their quantum transport properties. For insta…
Tailoring 10 nm Scale Suspended Graphene Junctions and Quantum Dots
V. Tayari, A. C. McRae, S. Yigen +3
The possibility to make 10 nm scale, and low-disorder, suspended graphene devices would open up many possibilities to study and make use of strongly coupled quantum electronics, qu…
Wiedemann-Franz Relation and Thermal-transistor Effect in Suspended Graphene
S. Yigen, A. R. Champagne
We extract experimentally the electronic thermal conductivity, , in suspended graphene which we dope using a back-gate electrode. We make use of two-point dc electron transp…
Electronic Thermal Conductivity Measurements in Intrinsic Graphene
S. Yiğen, V. Tayari, J. O. Island +2
The electronic thermal conductivity of graphene and 2D Dirac materials is of fundamental interest and can play an important role in the performance of nano-scale devices. We report…
Ultra-short suspended single-wall carbon nanotube transistors
J. O. Island, V. Tayari, S. Yigen +2
We describe a method to fabricate clean suspended single-wall carbon nanotube (SWCNT) transistors hosting a single quantum dot ranging in length from a few 10s of nm down to $\appr…