Artículo
Spin chains for robust state transfer: Modified boundary couplings versus completely engineered chains
Fecha de publicación:
01/2012
Editorial:
American Physical Society
Revista:
Physical Review A: Atomic, Molecular and Optical Physics
ISSN:
1050-2947
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Quantum state transfer in the presence of static disorder and noise is one of the main challenges in building quantum computers. We compare the quantum state transfer properties for two classes of qubit chains under the influence of static disorder. In fully engineered chains all nearest-neighbor couplings are tuned in such a way that a single-qubit state can be transferred perfectly between the ends of the chain, while in chains with modified boundaries only the two couplings between the transmitting and receiving qubits and the remainder of the chain can be optimized. We study how the disorder in the couplings affects the state transfer fidelity depending on the disorder model and strength as well as the chain type and length. We show that the desired level of fidelity and transfer time are important factors in designing a chain. In particular we demonstrate that transfer efficiency comparable or better than that of the most robust engineered systems can also be reached in chains with modified boundaries without the demanding engineering of a large number of couplings.
Palabras clave:
Quantum state transfer
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Articulos de INST.DE FISICA ENRIQUE GAVIOLA
Articulos de INST.DE FISICA ENRIQUE GAVIOLA
Citación
Zwick, Analía Elizabeth; Alvarez, Gonzalo Agustin; Stolze, Joachim; Osenda, Omar; Spin chains for robust state transfer: Modified boundary couplings versus completely engineered chains; American Physical Society; Physical Review A: Atomic, Molecular and Optical Physics; 85; 1; 1-2012; 1-5; 012318
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