Aharon-Vaidman quantum game with a Young-type photonic qutrit
arXiv:1107.5828 · doi:10.1103/PhysRevA.86.012321
Abstract
The Aharon-Vaidman (AV) game exemplifies the advantage of using simple quantum systems to outperform classical strategies. We present an experimental test of this advantage by using a three-state quantum system (qutrit) encoded in a spatial mode of a single photon passing through three slits. The preparation of a particular state is controlled as the photon propagates through the slits by varying the number of open slits and their respective phases. The measurements are achieved by placing detectors in the specific positions in the near and far fields after the slits. This set of tools allowed us to perform tomographic reconstructions of generalized qutrit states, and to implement the quantum version of the AV game with compelling evidence of the quantum advantage.
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References in corpus (8)
- Experimental non-classicality of an indivisible quantum system
- Ruling Out Multi-Order Interference in Quantum Mechanics
- Experimental optimal cloning of four-dimensional quantum states of photons
- Experimental demonstration of a quantum protocol for Byzantine agreement and liar detection
- Experimental generation and characterization of single-photon hybrid ququarts based on polarization-orbital angular momentum encoding
- Quantum advantages in classically defined tasks
- Measurement and control of spatial qubits generated by passing photons through double-slits
- Addendum to "Experimental demonstration of a quantum protocol for Byzantine agreement and liar detection" arXiv:0710.0290
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