Optimizing topology for quantum probing with discrete-time quantum walks
Simone Cavazzoni,
Paolo Bordone,
Matteo G. A. Paris
Abstract:Discrete-time quantum walk (DTQW) represents a convenient mathematical framework for describing the motion of a particle on a discrete set of positions when this motion is conditioned by the values of certain internal degrees of freedom, which are usually referred to as the coin of the particle. As such, and owing to the inherent dependence of the position distribution on the coin degrees of freedom, DTQWs naturally emerge as promising candidates for quantum metrology. In this paper, we explore the use of DTQW… Show more
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