论文标题

创意量子计算:逆FFT,声音合成,自适应测序和音乐构图

Creative Quantum Computing: Inverse FFT, Sound Synthesis, Adaptive Sequencing and Musical Composition

论文作者

Miranda, Eduardo R.

论文摘要

量子计算是一种替代计算技术,它建立在亚原子物理学的原理上。尽管在开发越来越复杂的硬件和软件方面取得了持续的进步,但对量子计算的访问仍然需要专业知识,这主要仅限于研究实验室。此外,这些发展的目标应用主要仍然是科学的。本章介绍了旨在改善这种情况的研究。我们的研究旨在扩展量子计算对艺术和创意应用的应用范围,音乐是我们的出发点。本章报告了初始结果,量子信息处理控制了反向快速傅立叶变换(FFT)声音合成器和自适应音乐序列器。提出了一个称为Zeno的组成,以说明实用的现实应用。

Quantum computing is emerging as an alternative computing technology, which is built on the principles of subatomic physics. In spite of continuing progress in developing increasingly more sophisticated hardware and software, access to quantum computing still requires specialist expertise that is largely confined to research laboratories. Moreover, the target applications for these developments remain primarily scientific. This chapter introduces research aimed at improving this scenario. Our research is aimed at extending the range of applications of quantum computing towards the arts and creative applications, music being our point of departure. This chapter reports on initial outcomes, whereby quantum information processing controls an inverse Fast Fourier Transform (FFT) sound synthesizer and an adaptive musical sequencer. A composition called Zeno is presented to illustrate a practical real-world application.

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