Photonic implementation of the quantum Morra game

Fuente: arXiv
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Main Authors: Ulibarrena, Andres, Sopena, Alejandro, Brooks, Russell, Centeno, Daniel, Ho, Joseph, Sierra, German, Fedrizzi, Alessandro
Format: Preprint
Published: 2023
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author Ulibarrena, Andres
Sopena, Alejandro
Brooks, Russell
Centeno, Daniel
Ho, Joseph
Sierra, German
Fedrizzi, Alessandro
author_facet Ulibarrena, Andres
Sopena, Alejandro
Brooks, Russell
Centeno, Daniel
Ho, Joseph
Sierra, German
Fedrizzi, Alessandro
contents In this paper, we study a faithful translation of a two-player quantum Morra game, which builds on previous work by including the classical game as a special case. We propose a natural deformation of the game in the quantum regime in which Alice has a winning advantage, breaking the balance of the classical game. A Nash equilibrium can be found in some cases by employing a pure strategy, which is impossible in the classical game where a mixed strategy is always required. We prepared our states using photonic qubits on a linear optics setup, with an average deviation less than 2% with respect to the measured outcome probabilities. Finally, we discuss potential applications of the quantum Morra game to the study of quantum information and communication.
format Preprint
id arxiv_https___arxiv_org_abs_2311_08495
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Photonic implementation of the quantum Morra game
Ulibarrena, Andres
Sopena, Alejandro
Brooks, Russell
Centeno, Daniel
Ho, Joseph
Sierra, German
Fedrizzi, Alessandro
Quantum Physics
In this paper, we study a faithful translation of a two-player quantum Morra game, which builds on previous work by including the classical game as a special case. We propose a natural deformation of the game in the quantum regime in which Alice has a winning advantage, breaking the balance of the classical game. A Nash equilibrium can be found in some cases by employing a pure strategy, which is impossible in the classical game where a mixed strategy is always required. We prepared our states using photonic qubits on a linear optics setup, with an average deviation less than 2% with respect to the measured outcome probabilities. Finally, we discuss potential applications of the quantum Morra game to the study of quantum information and communication.
title Photonic implementation of the quantum Morra game
topic Quantum Physics
url https://arxiv.org/abs/2311.08495