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6 papers · 2 filters
Manifestations of topological effects in graphene
Jiannis K. Pachos
Graphene is a monoatomic layer of graphite with Carbon atoms arranged in a two dimensional honeycomb lattice configuration. It has been known for more than sixty years that the ele…
-junction qubit in monolayer graphene
Colin Benjamin, Jiannis K. Pachos
We propose to combine the advantages of graphene, such as easy tunability and long coherence times, with Josephson physics to manufacture qubits. If these qubits are built around a…
Topological degeneracy and vortex manipulation in Kitaev's honeycomb model
G. Kells, A. T. Bolukbasi, V. Lahtinen +3
The classification of loop symmetries in Kitaev's honeycomb lattice model provides a natural framework to study the abelian topological degeneracy. We derive a perturbative low-ene…
Optical lattice quantum Hall effect
Rebecca N. Palmer, Alexander Klein, Dieter Jaksch
We explore the behavior of interacting bosonic atoms in an optical lattice subject to a large artificial magnetic field. We extend earlier investigations of this system where the n…
Detecting entangled states in graphene via crossed Andreev reflection
Colin Benjamin, Jiannis K. Pachos
Shot noise cross-correlations across single layer graphene structures are calculated with insulators separating a superconducting region. A new feature of specular crossed Andreev…
Entangling distant quantum dots using classical interference
Jonathan Busch, Elica S. Kyoseva, Michael Trupke +1
We show that it is possible to employ reservoir engineering to turn two distant and relatively bad cavities into one good cavity with a tunable spontaneous decay rate. As a result,…