15
collaborators
2013–2015
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
3 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Experimental private quantum randomness generation invulnerable to the detection loophole | QCRYPT 2015 | Gustavo Lima, Gustavo Cañas, Esteban Gómez, Johanna Barra, Adán Cabello, Guilherme Xavier, Marcin Pawlowski |
| Towards genuine energy-time entanglement quantum cryptography in installed telecom fibers | QCRYPT 2014 | Gonzalo Carvacho, Gabriel Saavedra, Alvaro Cuevas, Matthieu Meunier, Miguel Figueroa, Paolo Mataloni, Adán Cabello, Jan-Åke Larsson, Gustavo Lima, Guilherme Xavier |
| Long-distance distribution of genuine energy-time entanglement | QCRYPT 2013 | Alvaro Cuevas, Gonzalo Carvacho, Gabriel Saavedra, Wallon A. T. Nogueira, Miguel Figueroa, Adán Cabello, Paolo Mataloni, Gustavo Lima, Guilherme Xavier |
Practical and secure quantum communications must not depend on any physical assumptions on the employed devices and be able to cover long distances, preferably without a line-of-sight requirement. The violation of a Bell’s inequality offers a method to certify the security of the link. Energy-time entanglement-based quantum communications can fulfill all the practical requirements. Unfortunately the main configuration employed in many demonstrations suffers from a post-selection loophole, which can be used to break the security of the communication. Here we experimentally demonstrate for the first time a Bell violation with energy-time entangled photon pairs distributed over 1 km optical fibers, in a new “hug” interferometric configuration, which is free of the post-selection loophole. For the two-photon interference curves we obtain average raw and net visibilities of 84.4 and 95.1% respectively, with a corresponding violation of the Bell CHSH inequality of S = 2.39 for the raw results, surpassing the classical limit by 3.25 standard deviations. Our results indicate that quantum key distribution using energy-time entangled pairs free of the post-selection loophole is feasible over long-distances. |
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Collaborators
| Co-author | Joint talks |
|---|---|
| Adán Cabello | 3 |
| Guilherme Xavier | 3 |
| Gustavo Lima | 3 |
| Alvaro Cuevas | 2 |
| Gabriel Saavedra | 2 |
| Gonzalo Carvacho | 2 |
| Miguel Figueroa | 2 |
| Paolo Mataloni | 2 |
| Esteban Gómez | 1 |
| Gustavo Cañas | 1 |
| Jan-Åke Larsson | 1 |
| Johanna Barra | 1 |
| Marcin Pawlowski | 1 |
| Matthieu Meunier | 1 |
| Wallon A. T. Nogueira | 1 |