Quantum walks and quantum search on graphene latticesTools Foulger, Iain, Gnutzmann, Sven and Tanner, Gregor (2015) Quantum walks and quantum search on graphene lattices. Physical Review A, 91 (6). 062323/1-062323/15. ISSN 2469-9934 Full text not available from this repository.AbstractQuantum walks have been very useful in developing search algorithms in quantum information, in particular for devising of spatial search algorithms. However, the construction of continuous-time quantum search algorithms in two-dimensional lattices has proved difficult, requiring additional degrees of freedom. Here, we demonstrate that a continuous-time quantum walk search is possible in two dimensions by changing the search topology to a graphene lattice, utilizing the Dirac point in the energy spectrum. This is made possible by making a change to standard methods of marking a particular site in the lattice. Various ways of marking a site are shown to result in successful search protocols. We further establish that the search can be adapted to transfer probability amplitude across the lattice between specific lattice sites thus establishing a line of communication between these sites.
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