论文标题

关于热声指导中固有热声模式的不稳定性

On the instabilities of intrinsic thermoacoustic modes in a thermoacoustic waveguide with anechoic terminations

论文作者

Hao, Haitian, Semperlotti, Fabio

论文摘要

最近的一项研究[H. Hao和F. Semperlotti,物理。 Rev. B 104,104303(2021)]研究了无限的一维(1D)热声波指导(TAWG)的动态行为,并说明了其维持非逆局和接近零数索引声音宣传行为的能力;这些特性在包括声学二极管,放大器和斗篷在内的声学设备的设计中可能非常有益。然而,至关重要的是要意识到,当在有限的波导中实现此概念时,可能会发生动态不稳定性,并且会大大减少或完全阻碍TAWG控制和操纵声音的能力。在这项工作中,我们发现并研究了带有静止终止的1D tawg中evaneScent或固有的热声(ITA)模式的发生。稳定性分析清楚地区分了这两种类型的逃生模式,并突出了其不同的起源,它们植根于声学或热雾效应。数值结果表明,静脉终止的TAWG中的ITA模式严格连接到原声驱动的evanevanscent模式,并且随着TA耦合强度的提高,朝向不稳定的模式发展。这项研究可能对由TA耦合元素启用的新型声学操纵设备的实际设计具有重要意义。在这项研究中得出的结论也可能会使塔维斯的不稳定性有效地抑制。

A recent study [H. Hao and F. Semperlotti, Phys. Rev. B 104, 104303 (2021)] investigated the dynamic behavior of an infinite one-dimensional (1D) thermoacoustic waveguide (TAWG) and illustrated its ability to sustain nonreciprocal and near zero-index sound propagation behavior; these properties can be very beneficial in the design of acoustic devices, including acoustic diodes, amplifiers, and cloaks. Nevertheless, it is critical to realize that when this concept is implemented in a finite-length waveguide, dynamic instabilities may occur and either drastically reduce or completely hinder the ability of the TAWG to control and manipulate sound. In this work, we uncover and investigate the occurrence of either evanescent or intrinsic thermoacoustic (ITA) modes in a 1D TAWG with anechoic terminations. The stability analysis clearly distinguishes these two types of evanescent modes and highlights their different origin rooted in either acoustic or thermoviscous effects. Numerical results reveal that ITA modes in anechoic-terminated TAWG are strictly connected to the acoustic-driven evanescent modes, and evolve towards unstable modes as the TA coupling strength is increased. This study may have important implications for the practical design of novel acoustic manipulating devices enabled by TA coupling elements. The conclusions drawn in this study may also shed lights on the effective suppression of instabilities in TAWGs.

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