arXiv · 2006.14883
Quantum walk on a graph of spins: magnetism and entanglement
Abstract
We introduce a model of a quantum walk on a graph in which a particle jumps between neighboring nodes and interacts with independent spins sitting on the edges. Entanglement propagates with the walker. We apply this model to the case of a one dimensional lattice, to investigate its magnetic and entanglement properties. In the continuum limit, we recover a Landau-Lifshitz equation that describes the precession of spins. A rich dynamics is observed, with regimes of particle propagation and localization, together with spin oscillations and relaxation. Entanglement of the asymptotic states follows a volume law for most parameters (the coin rotation angle and the particle-spin coupling).
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Kevissen Sellapillay, Alberto D. Verga. 2020-06-26. Quantum walk on a graph of spins: magnetism and entanglement. https://doi.org/10.1103/physreve.103.032123
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