activity
20112023
most citedElectronic Thermal Conductivity Measurements in Intrinsic Graphene

64 citations · 161 across the 5 of their papers we have counts for

collaborators

5 papers

cond-mat.mes-hall2023★ 13 cited

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…

cond-mat.mes-hall2015★ 8 cited

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…

cond-mat.mes-hall2014★ 63 cited

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…

cond-mat.mes-hall2013★ 64 cited

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…

cond-mat.mes-hall2011★ 13 cited

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…