One-at-a-Time Quantum Guessing: Multipartite Entanglement Beyond MoE Games

📅 2026-08-17
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🤖 AI Summary
本文通过引入一种称为一次一人猜测游戏(OTG)的方法,研究了多体纠缠在量子信息中的有效性,并发现某些纠缠态能显著优于经典策略。
📝 Abstract
Multipartite entanglement remains a challenging and not fully understood aspect of quantum information. Monogamy-of-Entanglement (MoE) games have been highly effective for studying limitations on the usefulness of entanglement imposed by monogamy constraints. To better reveal the extent to which multipartite entanglement can be useful, we introduce a class of quantum guessing games, termed One-at-a-Time Guessing (OTG) games. In these games, quantum players individually guess the outcomes of random measurements performed by a referee on a pre-shared entangled state. Unlike MoE games, OTG games select players individually at random according to a specified probability distribution, thereby probing each player's correlation with the referee. We show that, despite monogamy constraints, players sharing certain entangled states can moderately outperform those relying only on classical uncertainty. This advantage arises even in simple OTG games involving only Pauli measurements on qubits, where optimal entanglement increases the winning probability by at least 4%. This contrasts with MoE games, where shared entanglement has been shown in several settings to provide only limited (if any) advantage over classical strategies. We further establish a majorization property: the value of an OTG game respects the majorization ordering of the player-selection probability distribution. We also analyze in detail a two-player OTG game in which the referee measures one of the three Pauli observables on a qubit, and show that it is optimally played using a specific parameterized family of three-qubit $W$-like states. These results suggest that OTG games provide a useful framework for investigating the usefulness of multipartite entanglement in multiparty quantum correlations.
Problem

Research questions and friction points this paper is trying to address.

multipartite entanglement
quantum information
monogamy-of-entanglement
quantum guessing games
One-at-a-Time Guessing
Innovation

Methods, ideas, or system contributions that make the work stand out.

One-at-a-Time Guessing (OTG) games
Multipartite entanglement
Monogamy-of-Entanglement (MoE) games
Majorization property
W-like states
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M
Michael Schleppy
Department of Electrical and Computer Engineering, Rutgers, the State University of New Jersey, Piscataway, NJ 08854, USA
Emina Soljanin
Emina Soljanin
Rutgers University
(quantum) coding & information theorydistributed storage & computing systems performancesecure networkingpower systems