Playing Games with Multiple Access Channels

September 05, 2019 Β· Declared Dead Β· πŸ› Nature Communications

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Authors Felix Leditzky, Mohammad A. Alhejji, Joshua Levin, Graeme Smith arXiv ID 1909.02479 Category quant-ph: Quantum Computing Cross-listed cs.IT Citations 58 Venue Nature Communications Last Checked 5 months ago
Abstract
Communication networks have multiple users, each sending and receiving messages. A multiple access channel (MAC) models multiple senders transmitting to a single receiver, such as the uplink from many mobile phones to a single base station. The optimal performance of a MAC is quantified by a capacity region of simultaneously achievable communication rates. We study the two-sender classical MAC, the simplest and best-understood network, and find a surprising richness in both a classical and quantum context. First, we find that quantum entanglement shared between senders can substantially boost the capacity of a classical MAC. Second, we find that optimal performance of a MAC with bounded-size inputs may require unbounded amounts of entanglement. Third, determining whether a perfect communication rate is achievable using finite-dimensional entanglement is undecidable. Finally, we show that evaluating the capacity region of a two-sender classical MAC is in fact NP-hard.
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