MIPᶜᵒ=coRE
Junqiao (Randy) Lin
摘要
In 2020, a landmark result by Ji, Natarajan, Vidick, Wright, and Yuen showed that MIP * , the class of languages that can be decided by a classical verifier interacting with multiple computationally unbounded provers sharing entanglement in the tensor product model, is equal to RE. We show that the class MIP co , a complexity class defined similarly to MIP * except with provers sharing the commuting operator model of entanglement, is equal to the class coRE. 1 . This shows that giving the provers two different models of entanglement leads to two completely different computational powers for interactive proof systems. Our proof builds upon the compression theorem used in the proof of MIP * = RE, and we use the tracially embeddable strategies framework to show that the same compression procedure in MIP * = RE also has the same desired property in the commuting operator setting. We also give a more streamlined proof of the compression theorem for non-local games by incorporating the synchronous framework used by Mousavi et al. [STOC 2022], as well as the improved Pauli basis test introduced by de la Salle [ArXiv:2204.07084].
We introduce a new equivalence condition for RE/coRE-complete problems, which we call the weakly compressible condition. We show that both MIP * and MIP co satisfy this condition through the compression theorem, and thereby establish that the uncomputability for MIP * and MIP co can be proved under a unified framework (despite these two complexity classes being different). Notably, this approach also gives an alternative proof of the MIP * = RE theorem, which does not rely on the preservation of the entanglement bound. In addition to non-local games, this new condition could also potentially be applicable to other decision problems.
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它引用的顶会 Paper8
- Quantum Advantage from Any Non-local GameYael Kalai, Alex Lombardi, Vinod Vaikuntanathan, Lisa YangSTOC 2023 · 被引用 25 次
- RE-completeness of entangled constraint satisfaction problemsEric Culf, Kieran MastelFOCS 2025 · 被引用 14 次
- Nonlocal games, compression theorems, and the arithmetical hierarchyHamoon Mousavi, Seyed Sajjad Nezhadi, Henry YuenSTOC 2022 · 被引用 9 次
- Approximation Algorithms for Noncommutative CSPsEric Culf, Hamoon Mousavi, Taro SpirigFOCS 2024 · 被引用 7 次
- Quantum soundness of testing tensor codesZhengfeng Ji, Anand Natarajan, Thomas Vidick, John Wright 等FOCS 2021 · 被引用 6 次
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