用量子纠缠实时生成音乐与视觉,创造无法复现的科学艺术表演。
The Sound of Entanglement
- 实时采集纠缠光子的贝尔测试数据驱动音乐创作
- 演出依赖量子关联,任何经典设备都无法复现
- 适合对量子艺术、跨学科创新感兴趣的观众
量子物理的出现彻底改变了我们对宇宙的认知,以内在随机性和量子关联取代了经典物理的确定性框架。这一转变不仅催生了量子传感器、网络和计算机等突破性技术,也为艺术表达开辟了全新可能。本文探讨量子力学与艺术的交汇,聚焦于利用量子纠缠和固有随机性作为创作工具。具体而言,我们呈现《纠缠之声》——一场由真实贝尔测试中纠缠光子的实时测量驱动的现场音乐表演。通过将测得的量子关联作为核心作曲元素,并同步实验数据与实时视觉,演出创造出一种独一无二且不可重复的视听体验,其基础为经典设备无法生成的量子关联。通过科学与艺术的融合,我们旨在深化对量子现象的理解,同时拓展创造性表达的边界。
原文摘要 · Abstract (English)
The advent of quantum physics has revolutionized our understanding of the universe, replacing the deterministic framework of classical physics with a paradigm dominated by intrinsic randomness and quantum correlations. This shift has not only enabled groundbreaking technologies, such as quantum sensors, networks and computers, but has also unlocked entirely new possibilities for artistic expressions. In this paper, we explore the intersection of quantum mechanics and art, focusing on the use of quantum entanglement and inherent randomness as creative tools. Specifically, we present The Sound of Entanglement, a live musical performance driven by real-time measurements of entangled photons in a Bell test. By integrating the measured quantum correlations as a central compositional element and synchronizing live visuals with experimental data, the performance offers a unique and unrepeatable audiovisual experience that relies on quantum correlations which cannot be produced by any classical device. Through this fusion of science and art, we aim to provide a deeper appreciation of quantum phenomena while expanding the boundaries of creative expression.
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