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Entanglement Theory Quantum Correlations
Time from quantum entanglement: an experimental illustration
arXiv
Authors: Ekaterina Moreva, Giorgio Brida, Marco Gramegna, Vittorio Giovannetti, Lorenzo Maccone, Marco Genovese
Year
2013
Paper ID
32190
Status
Preprint
Abstract Read
~2 min
Abstract Words
140
Citations
N/A
Abstract
In the last years several theoretical papers discussed if time can be an emergent property deriving from quantum correlations. Here, to provide an insight into how this phenomenon can occur, we present an experiment that illustrates Page and Wootters' mechanism of "static" time, and Gambini et al. subsequent refinements. A static, entangled state between a clock system and the rest of the universe is perceived as evolving by internal observers that test the correlations between the two subsystems. We implement this mechanism using an entangled state of the polarization of two photons, one of which is used as a clock to gauge the evolution of the second: an "internal" observer that becomes correlated with the clock photon sees the other system evolve, while an "external" observer that only observes global properties of the two photons can prove it is static.
Why This Paper Matters
- This paper contributes to the Entanglement Theory & Quantum Correlations research area in the Quantum Articles archive.
- It adds a 2013 reference point for readers tracking recent quantum research.
- In the last years several theoretical papers discussed if time can be an emergent property deriving from quantum correlations.
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