Artículo
System-time entanglement in a discrete-time model
Boette, Alan Pablo
; Rossignoli, Raúl Dante; Gigena, Nicolás Alejandro
; Cerezo de la Roca, Marco Vinicio Sebastian
Fecha de publicación:
06/2016
Editorial:
American Physical Society
Revista:
Physical Review A
ISSN:
2469-9934
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
We present a model of discrete quantum evolution based on quantum correlations between the evolving system and a reference quantum clock system. A quantum circuit for the model is provided, which in the case of a constant Hamiltonian is able to represent the evolution over 2n time steps in terms of just n time qubits and n control gates. We then introduce the concept of system-time entanglement as a measure of distinguishable quantum evolution, based on the entanglement between the system and the reference clock. This quantity vanishes for stationary states and is maximum for systems jumping onto a new orthogonal state at each time step. In the case of a constant Hamiltonian leading to a cyclic evolution it is a measure of the spread over distinct energy eigenstates and satisfies an entropic energy-time uncertainty relation. The evolution of mixed states is also examined. Analytical expressions for the basic case of a qubit clock, as well as for the continuous limit in the evolution between two states, are provided.
Palabras clave:
Quantum Entanglement
,
Time
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Citación
Boette, Alan Pablo; Rossignoli, Raúl Dante; Gigena, Nicolás Alejandro; Cerezo de la Roca, Marco Vinicio Sebastian; System-time entanglement in a discrete-time model; American Physical Society; Physical Review A; 93; 6; 6-2016; 621271-6212717
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