物理
非线性系统
互惠(文化人类学)
光学
同步(交流)
波长
声学
散射
计算机科学
电信
量子力学
心理学
社会心理学
频道(广播)
作者
Alexander K. Stoychev,Xinxin Guo,Ulrich Kuhl,Nicolas Noiray
摘要
This contribution investigates the scattering properties of aeroacoustic limit cycles and their reciprocity-breaking interactions. Specifically, a mean tangential flow grazing an aperture is employed to generate a self-sustained cavity mode (a whistle), providing a framework for analyzing the acoustic scattering behavior of a self-excited, sub-wavelength structure, referred to as a meta-atom. The nonlinear interactions within a system of coupled meta-atoms are then harnessed to control the wave propagation in an acoustic waveguide, demonstrating phenomena such as synchronization-driven superradiance, unidirectional transmission and unidirectional transparency. Furthermore, using the mean flow as a control signal enables the management of the wave propagation path across multiple waveguides connected to the meta-atom assembly. Additionally, the experimentally observed phenomena have been successfully described by a minimal model of a nonlinear saturable gain oscillator. The model's autonomous and non-autonomous dynamics, as well as its synchronization properties, are shown to align with experimental measurements.
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