隐形传态游戏:用于交互式音乐的多智能体系统中的量子隐形传态
Teleportation Game: Quantum Teleportation in Multi-Agent Systems for Interactive Music
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中文总结 AI 辅助
研究用于交互式音乐的多智能体量子系统,通过单量子比特概率幅度调制和量子相位估计编码智能体行为,利用量子隐形传态通信,将噪声和退相干视为创意条件,开发评估方法,证明隐形传态是有前途的交互机制并指明未来方向。
中文摘要 AI 辅助
本文介绍了一种具有量子音乐智能体的交互式音乐系统,这些智能体通过相互隐形传态量子态进行通信。人类表演者与智能体实时互动,智能体的旋律和节奏行为使用单量子比特概率幅度调制(SQPAM)编码为量子态,并通过量子相位估计(QPE)进行结构化。在单个量子电路中组合多达三个智能体,通过量子隐形传态进行定向通信。我们旨在支持类似自由爵士即兴演奏的模糊、变革性互动。因此,该系统将噪声和退相干视为创造性的条件,将智能体通信视为量子低语,即状态转移中刻意的、具有音乐表现力的不完美。我们基于旋律相关性、音高集距离和状态保真度进行了演示和分析,观察到模仿与分歧之间的连续体。我们开发了一种可调解释方法来评估智能体如何重新解释隐形传态的状态。这项工作将隐形传态定位为基于智能体的量子计算机音乐的一种有前途的交互机制,并概述了通过量子互联网连接分布式合奏的未来方向。
英文摘要
This paper introduces an interactive music system with quantum musical agents that communicate by teleporting quantum states to one another. Human performers interact in real time with agents whose melodic and rhythmic behaviours are encoded as quantum states using Single Qubit Probability Amplitude Modulation (SQPAM) and structured through Quantum Phase Estimation (QPE). Up to three agents are combined within a single quantum circuit, with directed communication via quantum teleportation. We are interested in supporting ambiguous, transformative interactions reminiscent of free Jazz improvisation. Therefore, rather than treating noise and decoherence as limitations, the system embraces NISQ-era constraints as creative affordances, framing agent communication as quantum whispers, that is, deliberate, musically expressive imperfections in state transfer. We provide demonstrations and analyses based on melodic correlation, pitch-set distance, and state fidelity, where a continuum between imitation and divergence can be observed. We developed a tunable interpretation method to assess how agents reinterpret teleported states. This work positions teleportation as a promising interaction mechanism for agent-based quantum computer music and outlines future directions toward distributed ensembles connected via the Quantum Internet.
发表机构
- University of Plymouth(普利茅斯大学)
- Stanford University(斯坦福大学)
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