arXiv:2505.20565quant-phcs.ET2025-05被引 2

用量子计算生成节奏、音色、和声与空间感,探索音乐创作新可能。

Techniques for Quantum-Computing-Aided Algorithmic Composition: Experiments in Rhythm, Timbre, Harmony, and Space

  • 用量子模拟建模创作决策,控制音乐结构层次。
  • 通过量子粒子追踪生成噪声音色,实现独特听觉效果。
  • 适合对量子艺术与实验音乐感兴趣的创作者与研究者。

量子计算可用于计算机辅助音乐创作,以不同结构层级控制音乐的各种属性。本文介绍利用量子模拟建模作曲决策,通过量子粒子追踪模拟生成基于噪声的音色,运用基态矢量旋转在颗粒化和声纹理中引发概率行为变化,并利用量子测量误差导致空间声场的噪声扰动。文中阐述了这些技术的基本概念,提供了实现它们的算法与软件,并展示其在计算机生成音乐中的应用实例。

原文摘要 · Abstract (English)

Quantum computing can be employed in computer-aided music composition to control various attributes of the music at different structural levels. This article describes the application of quantum simulation to model compositional decision making, the simulation of quantum particle tracking to produce noise-based timbres, the use of basis state vector rotation to cause changing probabilistic behaviors in granular harmonic textures, and the exploitation of quantum measurement error to cause noisy perturbations of spatial soundpaths. We describe the concepts fundamental to these techniques, we provide algorithms and software enacting them, and we provide examples demonstrating their implementation in computer-generated music.

量子音乐算法作曲声音设计

Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。