We address the dynamics of two indistinguishable interacting particles moving on a dynamical percolation graph, i.e., a graph where the edges are independent random telegraph processes whose values jump between 0 and 1, thus mimicking percolation. The interplay between the particle interaction strength, initial state and the percolation rate determine different dynamical regimes for the walkers. We show that, whenever the walkers are initially localised within the interaction range, fast noise enhances the particle spread compared to the noiseless case.

Siloi, I., Benedetti, C., Piccinini, E., Paris, M.G.A., Bordone, P. (2017). Quantum walks of two interacting particles on percolation graphs. JOURNAL OF PHYSICS. CONFERENCE SERIES, 906(1), 1-4 [10.1088/1742-6596/906/1/012017].

Quantum walks of two interacting particles on percolation graphs

Piccinini, Enrico;
2017

Abstract

We address the dynamics of two indistinguishable interacting particles moving on a dynamical percolation graph, i.e., a graph where the edges are independent random telegraph processes whose values jump between 0 and 1, thus mimicking percolation. The interplay between the particle interaction strength, initial state and the percolation rate determine different dynamical regimes for the walkers. We show that, whenever the walkers are initially localised within the interaction range, fast noise enhances the particle spread compared to the noiseless case.
2017
Siloi, I., Benedetti, C., Piccinini, E., Paris, M.G.A., Bordone, P. (2017). Quantum walks of two interacting particles on percolation graphs. JOURNAL OF PHYSICS. CONFERENCE SERIES, 906(1), 1-4 [10.1088/1742-6596/906/1/012017].
Siloi, Ilaria; Benedetti, Claudia; Piccinini, Enrico; Paris, Matteo G. A.; Bordone, Paolo
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/615672
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