Space QUEST mission proposal: Experimentally testing decoherence due to gravity
Author(s)
Joshi, Siddarth KoduruPienaar, Jacques
Ralph, Timothy C.
Cacciapuoti, Luigi
McCutcheon, Will
Rarity, John
Giggenbach, Dirk
Makarov, Vadim
Fuentes, Ivette
Scheidl, Thomas
Beckert, Erik
Bourennane, Mohamed
Bruschi, David Edward
Cabello, Adán
Capmany, Jose
Carrasco, José A.
Carrasco-Casado, Alberto
Diamanti, Eleni
Duusek, Miloslav
Elser, Dominique
Gulinatti, Angelo
Hadfield, Robert H.
Jennewein, Thomas
Kaltenbaek, Rainer
Krainak, Michael A.
Lo, Hoi-Kwong
Marquardt, Christoph
Milburn, Gerard
Peev, Momtchil
Poppe, Andreas
Pruneri, Valerio
Renner, Renato
Salomon, Christophe
Skaar, Johannes
Solomos, Nikolaos
Stipčević, Mario
Torres, Juan P.
Toyoshima, Morio
Villoresi, Paolo
Walmsley, Ian,
Weihs, Gregor
Weinfurter, Harald
Zeilinger, Anton
Żukowski, Marek
Ursin, Rupert
Contributor(s)
Google Inc.Department of Physics and Centre for Quantum Computer Technology ; The University of Queensland [Brisbane]
Agence Spatiale Européenne (ESA) ; European Space Agency (ESA)
University of Bristol [Bristol]
Fraunhofer Institute for Applied Optics and Precision Engineering ( IOF)
CETaqua
Laboratoire Charles Fabry de l'Institut d'Optique / Optique quantique ; Laboratoire Charles Fabry de l'Institut d'Optique (LCFIO) ; Université Paris-Sud - Paris 11 (UP11) - Institut d'Optique Graduate School (IOGS) - Centre National de la Recherche Scientifique (CNRS) - Université Paris-Sud - Paris 11 (UP11) - Institut d'Optique Graduate School (IOGS) - Centre National de la Recherche Scientifique (CNRS)
Politecnico di Milano [Milan]
Vienna Center for Quantum Science and Technology ; TU Vienna
Max Planck Institute for the Science of Light ; Erlangen
Institut de Ciencies Fotoniques [Castelldefels] (ICFO)
Laboratoire Kastler Brossel (LKB (Lhomond)) ; École normale supérieure - Paris (ENS Paris) - Université Pierre et Marie Curie - Paris 6 (UPMC) - Centre National de la Recherche Scientifique (CNRS)
National Institute of Information and Communications Technology (NICT)
Clarendon Laboratory ; University of Oxford [Oxford]
Institute for Quantum Optics and Quantum Information ; Austrian Academy of Sciences (OeAW)
Institute of Quantum Optics and Quantum Information (IQOQI) ; Austrian Academy of Sciences (OeAW)
Keywords
[PHYS.QPHY] Physics [physics]/Quantum Physics [quant-ph][PHYS.GRQC] Physics [physics]/General Relativity and Quantum Cosmology [gr-qc]
Full record
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http://hal.upmc.fr/hal-01671942Abstract
16 pages, 11 figures, updated conclusion to include secondary objective of quantum communication, minor changes to text and updated author listModels of quantum systems on curved space-times lack sufficient experimental verification. Some speculative theories suggest that quantum properties, such as entanglement, may exhibit entirely different behavior to purely classical systems. By measuring this effect or lack thereof, we can test the hypotheses behind several such models. For instance, as predicted by Ralph and coworkers [T C Ralph, G J Milburn, and T Downes, Phys. Rev. A, 79(2):22121, 2009, T C Ralph and J Pienaar, New Journal of Physics, 16(8):85008, 2014], a bipartite entangled system could decohere if each particle traversed through a different gravitational field gradient. We propose to study this effect in a ground to space uplink scenario. We extend the above theoretical predictions of Ralph and coworkers and discuss the scientific consequences of detecting/failing to detect the predicted gravitational decoherence. We present a detailed mission design of the European Space Agency's (ESA) Space QUEST (Space - Quantum Entanglement Space Test) mission, and study the feasibility of the mission schema.
Date
2017-12-22Type
info:eu-repo/semantics/preprintIdentifier
oai:HAL:hal-01671942v1hal-01671942
http://hal.upmc.fr/hal-01671942
ARXIV : 1703.08036
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