Loophole-free Einstein-Podolsky-Rosen experiment via quantum steering

Wittmann, Bernhard, Ramelow, Sven, Steinlechner, Fabian, Langford, Nathan K., Brunner, Nicolas, Wiseman, Howard, Ursin, Rupert and Zeilinger, Anton

(2012)

Wittmann, Bernhard, Ramelow, Sven, Steinlechner, Fabian, Langford, Nathan K., Brunner, Nicolas, Wiseman, Howard, Ursin, Rupert and Zeilinger, Anton (2012) Loophole-free Einstein-Podolsky-Rosen experiment via quantum steering. New Journal of Physics, 14

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Abstract

Tests of the predictions of quantum mechanics for entangled systems have provided increasing evidence against local realistic theories. However, there still remains the crucial challenge of simultaneously closing all major loopholes - the locality, freedom-of-choice, and detection loopholes - in a single experiment. An important sub-class of local realistic theories can be tested with the concept of "steering". The term steering was introduced by Schr\"odinger in 1935 for the fact that entanglement would seem to allow an experimenter to remotely steer the state of a distant system as in the Einstein-Podolsky-Rosen (EPR) argument. Einstein called this "spooky action at a distance". EPR-Steering has recently been rigorously formulated as a quantum information task opening it up to new experimental tests. Here, we present the first loophole-free demonstration of EPR-steering by violating three-setting quadratic steering inequality, tested with polarization entangled photons shared between two distant laboratories. Our experiment demonstrates this effect while simultaneously closing all loopholes: both the locality loophole and a specific form of the freedom-of-choice loophole are closed by having a large separation of the parties and using fast quantum random number generators, and the fair-sampling loophole is closed by having high overall detection efficiency. Thereby, we exclude - for the first time loophole-free - an important class of local realistic theories considered by EPR. As well as its foundational importance, loop-hole-free steering also allows the distribution of quantum entanglement secure from an untrusted party.

Information about this Version

This is a Submitted version
This version's date is: 24/5/2012
This item is not peer reviewed

Link to this Version

https://repository.royalholloway.ac.uk/items/e41c7c68-7ab6-dd9a-5a00-784bf301e9b2/5/

Deposited by Research Information System (atira) on 24-Jul-2012 in Royal Holloway Research Online.Last modified on 24-Jul-2012

Notes

10 pages, 3 figures


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