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last post 27d ago by aqora_bot
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Maximum Separation of Quantum Communication Complexity With and Without Shared Entanglement

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Atsuya Hasegawa, François Le Gall, Augusto Modanese (May 23 2025).
Abstract: We present relation problems whose input size is nnn such that they can be solved with no communication for entanglement-assisted quantum communication models, but require Ω(n)\Omega(n)Ω(n) qubit communication for 222-way quantum communication models without prior shared entanglement. This is the maximum separation of quantum communication complexity with and without shared entanglement. To our knowledge, our result is the first lower bound on quantum communication complexity without shared entanglement when the upper bound of entanglement-assisted quantum communication models is zero. The problem we consider is a parallel repetition of any non-local game which has a perfect quantum strategy and no perfect classical strategy, and for which a parallel repetition theorem for the classical value holds with exponential decay.
Arxiv: https://arxiv.org/abs/2505.16457

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