activity
20122016
most citedSub-diffractional, volume-confined polaritons in a natural hyperbolic material: hexagonal boron nitride

967 citations · 2.1k across the 6 of their papers we have counts for

collaborators

6 papers

cond-mat.mes-hall2016100 cited

Edge currents shunt the insulating bulk in gapped graphene

M. J. Zhu, A. V. Kretinin, M. D. Thompson +13

An energy gap can be opened in the electronic spectrum of graphene by lifting its sublattice symmetry. In bilayers, it is possible to open gaps as large as 0.2 eV. However, these g…

cond-mat.mes-hall2014744 cited

Detecting Topological Currents in Graphene Superlattices

R. V. Gorbachev, J. C. W. Song, G. L. Yu +8

Topological materials may exhibit Hall-like currents flowing transversely to the applied electric field even in the absence of a magnetic field. In graphene superlattices, which ha…

cond-mat.mes-hall2014188 cited

Hierarchy of Hofstadter states and replica quantum Hall ferromagnetism in graphene superlattices

G. L. Yu, R. V. Gorbachev, J. S. Tu +16

Self-similarity and fractals have fascinated researchers across various disciplines. In graphene placed on boron nitride and subjected to a magnetic field, self-similarity appears…

cond-mat.mes-hall201450 cited

Unintentional high density p-type modulation doping of a GaAs/AlAs core-multi-shell nanowire

J. Jadczak, P. Plochocka, A. Mitioglu +8

Achieving significant doping in GaAs/AlAs core/shell nanowires (NWs) is of considerable technological importance but remains a challenge due to the amphoteric behavior of the dopan…

cond-mat.mtrl-sci2014967 cited

Sub-diffractional, volume-confined polaritons in a natural hyperbolic material: hexagonal boron nitride

Joshua D. Caldwell, Andrey Kretinin, Yiguo Chen +12

Strongly anisotropic media where the principal components of the dielectric tensor have opposite signs are called hyperbolic. Such materials length exhibit unique nanophotonic prop…

cond-mat.mes-hall20125 cited

Entangling electrons by splitting Cooper pairs: Two-particle conductance resonance and time coincidence measurements

Anindya Das, Yuval Ronen, Moty Heiblum +3

Entanglement, being at the heart of the Einstein-Podolsky-Rosen (EPR) paradox, is a necessary ingredient in processing quantum information. Cooper pairs in superconductors - being…