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dc.date.accessioned | 2020-06-26T12:37:23Z | |
dc.date.available | 2020-06-26T12:37:23Z | |
dc.date.issued | 2017-12 | |
dc.identifier.uri | http://sedici.unlp.edu.ar/handle/10915/99211 | |
dc.description.abstract | We present a proof-of-principle demonstration of a method to characterize any pure spatial qudit of arbitrary dimension d, which is based on the classic phase-shift interferometry technique. In the proposed scheme a total of only 4d measurement outcomes are needed, implying a significant reduction with respect to the standard schemes for quantum-state tomography which require on the order of d2. By using this technique, we have experimentally reconstructed a large number of states ranging from d=2 up to 14 with mean fidelity values higher than 0.97. For that purpose the qudits were codified in the discretized transverse-momentum position of single photons, once they are sent through an aperture with d slits. We provide an experimental implementation of the method based in a Mach-Zehnder interferometer, which allows one to reduce the number of measurement settings to four since the d slits can be measured simultaneously. Furthermore, it can be adapted to consider the reconstruction of the unknown state from the outcome frequencies of 4d-3 fixed projectors independently of the encoding or the nature of the quantum system, allowing one to implement the reconstruction method in a general experiment. | en |
dc.language | en | es |
dc.subject | Quantum information | es |
dc.subject | Quantum state tomography | es |
dc.subject | High dimensional quantum states | es |
dc.subject | Quantum optic implementation | es |
dc.title | Determination of any pure spatial qudits from a minimum number of measurements by phase-stepping interferometry | en |
dc.type | Articulo | es |
sedici.identifier.uri | https://ri.conicet.gov.ar/11336/50049 | es |
sedici.identifier.other | http://dx.doi.org/10.1103/PhysRevA.96.062328 | es |
sedici.identifier.other | hdl:11336/50049 | es |
sedici.identifier.issn | 2469-9934 | es |
sedici.creator.person | Pears Stefano, Quimey Martín | es |
sedici.creator.person | Rebón, Lorena | es |
sedici.creator.person | Ledesma, Silvia Adriana | es |
sedici.creator.person | Iemmi, Claudio César | es |
sedici.subject.materias | Física | es |
sedici.description.fulltext | true | es |
mods.originInfo.place | Instituto de Física La Plata | es |
sedici.subtype | Preprint | es |
sedici.rights.license | Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0) | |
sedici.rights.uri | http://creativecommons.org/licenses/by-nc-sa/4.0/ | |
sedici.description.peerReview | peer-review | es |
sedici.relation.journalTitle | Physical Review A | es |
sedici.relation.journalVolumeAndIssue | vol. 96, no. 6 | es |