Mathematical Foundations of Complex Tonality
Jeffrey R. Boland, Lane P. Hughston

TL;DR
This paper introduces a novel musical tuning system based on ratios of Gaussian integers, offering a more natural and flexible alternative to equal temperament and just intonation, with a comprehensive framework for scales.
Contribution
It proposes a new complex interval scheme using Gaussian integer ratios, enabling the construction of complete major and minor scales in all keys.
Findings
Complex intervals based on Gaussian primes form a complete scale system.
The scheme accurately represents traditionally problematic intervals like the tritone.
Provides a mathematically consistent foundation for complex tonal systems.
Abstract
Equal temperament, in which semitones are tuned in the irrational ratio of , is best seen as a serviceable compromise, sacrificing purity for flexibility. Just intonation, in which intervals are given by products of powers of , , and , is more natural, but of limited flexibility. We propose a new scheme in which ratios of Gaussian integers form the basis of an abstract tonal system. The tritone, so problematic in just temperament, given ambiguously by the ratios , , , , none satisfactory, is in our scheme represented by the complex ratio . The major and minor whole tones, given by intervals of and , can each be factorized into products of complex semitones, giving us a major complex semitone and a minor complex semitone…
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Taxonomy
TopicsDigital Filter Design and Implementation · Music and Audio Processing · Speech and Audio Processing
