Artículo
Characterizing d-dimensional quantum channels by means of quantum process tomography
Fecha de publicación:
09/2018
Editorial:
Optical Society of America
Revista:
Optics Letters
ISSN:
0146-9592
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
In this Letter, we propose a simple optical architecture based on phase-only programmable spatial light modulators, in order to characterize general processes on photonic spatial quantum systems in a >2 Hilbert space. We demonstrate the full reconstruction of typical noises affecting quantum computing, such as amplitude shifts, phase shifts, and depolarizing channels in dimension =5. We have also reconstructed simulated atmospheric turbulences affecting a free-space transmission of qudits in dimension =4. In each case, quantum process tomography was performed in order to obtain the matrix that fully describes the corresponding quantum channel, ℰ. Fidelities between the states are experimentally obtained after going through the channel, and the expected ones are above 97%.
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Articulos de INST.DE FISICA LA PLATA
Citación
Varga, Juan José Miguel; Rebón, Lorena; Pears Stefano, Quimey Martín; Iemmi, Claudio César; Characterizing d-dimensional quantum channels by means of quantum process tomography; Optical Society of America; Optics Letters; 43; 18; 9-2018; 4398-4401
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