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20022013
most citedHeavy quarkonium: progress, puzzles, and opportunities

1.8k citations

Showing 2012 · cond-mat.mes-hallShow all

13 papers · 2 filters

cond-mat.mes-hall201263 cited

Quantum spin Hall effect induced by electric field in silicene

Xing-Tao An, Yan-Yang Zhang, Jian-Jun Liu +1

We investigate the transport properties in a zigzag silicene nanoribbon in the presence of an external electric field. The staggered sublattice potential and two kinds of Rashba sp…

cond-mat.mes-hall201250 cited

Topological phases in gated bilayer graphene: Effects of Rashba spin-orbit coupling and exchange field

Zhenhua Qiao, Xiao Li, Wang-Kong Tse +3

We present a systematic study on the influence of Rashba spin-orbit coupling, interlayer potential difference and exchange field on the topological properties of bilayer graphene.…

cond-mat.mes-hall201212 cited

Quantum transport in topological insulator hybrid structures -- A combination of topological insulator and superconductor

YongXi Ou, Meenakshi Singh, Jian Wang

In this paper, a brief review of the history of topological insulators is given. After that,electronic transport experiments in topological insulator-superconductor hybrid structur…

cond-mat.mes-hall20124 cited

Disorder induced field effect transistor in bilayer and trilayer graphene

Dongwei Xu, Haiwen Liu, Vincent Sacksteder +4

We propose use of disorder to produce a field effect transistor (FET) in biased bilayer and trilayer graphene. Modulation of the bias voltage can produce large variations in the co…

cond-mat.mes-hall201272 cited

Evidence for Superlattice Dirac Points and Space-dependent Fermi Velocity in Corrugated Graphene Monolayer

Hui Yan, Zhao-Dong Chu, Wei Yan +10

Recent studies show that periodic potentials can generate superlattice Dirac points at energies in graphene (is the Fermi velocity of graphene and G is the reciprocal superlattice…

cond-mat.mes-hall2012181 cited

Unconventional Quantum Hall Effect and Tunable Spin Hall Effect in MoS2 Trilayers

Xiao Li, Fan Zhang, Qian Niu

We analyze the Landau level (LL) structure and spin Hall effect in a MoS2 trilayer. Due to orbital asymmetry, the low-energy Dirac fermions become heavily massive and the LL energi…