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From the 1 of 6 linked papers with an AI index.

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6 papers

quant-ph2026

Quantum Nonlocality under Latency Constraints

Dawei Ding, Zhengfeng Ji, Pierre Pocreau +2

The paper extends Bell inequality theory by explicitly incorporating spacetime latency constraints, introducing latency‑constrained games to compare classical and quantum correlati…

quant-ph2026

Learning to Decode in Parallel: Self-Coordinating Neural Network for Real-Time Quantum Error Correction

Kai Zhang, Zhengzhong Yi, Shaojun Guo +13

Fast, reliable decoders are pivotal components for enabling fault-tolerant quantum computation (FTQC). Neural network decoders like AlphaQubit have demonstrated potential, achievin…

quant-ph2025

Quantum Design Automation: Foundations, Challenges, and the Road Ahead

Feng Wu, Jingzhe Guo, Tian Xia +12

Quantum computing is transitioning from laboratory research to industrial deployment, yet significant challenges persist: system scalability and performance, fabrication yields, an…

quant-ph2025

A Meta-Complexity Characterization of Minimal Quantum Cryptography

Bruno Cavalar, Boyang Chen, Andrea Coladangelo +4

We give a meta-complexity characterization of EFI pairs, which are considered the "minimal" primitive in quantum cryptography (and are equivalent to quantum commitments). More prec…

quant-ph2025

LATTE: A Decoding Architecture for Quantum Computing with Temporal and Spatial Scalability

Kai Zhang, Jubo Xu, Fang Zhang +3

Quantum error correction allows inherently noisy quantum devices to emulate an ideal quantum computer with reasonable resource overhead. As a crucial component, decoding architectu…

quant-ph2025

Learning Neural Decoding with Parallelism and Self-Coordination for Quantum Error Correction

Kai Zhang, Situ Wang, Linghang Kong +3

Fast, reliable decoders are pivotal components for enabling fault-tolerant quantum computation. Neural network decoders like AlphaQubit have demonstrated significant potential, ach…