Register jumps on the clarinet: numerical and in-vitro investigation into basins of attraction and phase-tipping
Nathan Szwarcberg (LMA), Tom Colinot, Christophe Vergez (LMA), Michael Jousserand, L\'eonie Maignan (LMA), Anthia Patsinakidou (LMA), Giordano Gatti (LMA), Hrant Arzumanyan (LMA), P.F. Oliveira Morais (LMA)

TL;DR
This study investigates the complex dynamics of register transitions in clarinet playing, revealing phase-dependent behavior, basin of attraction interactions, and noise robustness through numerical and in-vitro methods.
Contribution
It introduces a detailed numerical analysis of phase-tipping and basin interactions during register jumps, highlighting the influence of timing and noise on stability.
Findings
Register transition success depends on phase at hole opening.
Equilibrium regimes are more noise-robust than oscillating regimes.
Transient quasiperiodic states are influenced by opening phase and duration.
Abstract
When playing the clarinet, opening the register hole allows for a transition from the first to the second register, producing a twelfth interval. On an artificial player system, the blowing pressure range where the second register remains stable can be determined by gradually varying the blowing pressure while keeping the register hole open. However, when the register hole is opened while the instrument is already producing the first register, the range of blowing pressures that lead to a stable second register is narrower than the full stability zone of the second register. This phenomenon is investigated numerically by performing multiple hole openings at different times, for various values of the blowing pressure and the embouchure parameter. In some narrow regions of the control parameters space, the success of a register transition depends on the phase at which the hole is opened.…
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Taxonomy
TopicsMusic Technology and Sound Studies
