Ida Masato
Center for Promotion of Computational Science and Engineering, Japan Atomic Energy Research Institute, 6-9-3 Higashi-Ueno, Taito-ku, Tokyo 110-0015, Japan.
Phys Rev E Stat Nonlin Soft Matter Phys. 2005 Sep;72(3 Pt 2):036306. doi: 10.1103/PhysRevE.72.036306. Epub 2005 Sep 26.
The resonance frequencies and oscillation phases of three acoustically coupled bubbles are examined to show that avoided crossings can appear in a multibubble system. Via a simple coupled oscillator model, we show that if at least three bubbles exist, it is possible for their resonance frequencies as functions of the separation distances between the bubbles to experience an avoided crossing. Furthermore, by focusing our attention on the oscillation phases and based on analysis of the transition frequencies [M. Ida, Phys. Lett. A 297, 210 (2002); J. Phys. Soc. Jpn. 71, 1214 (2002)] of the coupled bubbles, we show that a distinct state exchange takes place between the bubbles at a point in the avoided crossing region, where a resonance frequency of the triple-bubble system crosses with a transition frequency not corresponding to the resonance frequencies.
研究了三个声学耦合气泡的共振频率和振荡相位,以表明在多气泡系统中可以出现避免交叉现象。通过一个简单的耦合振子模型,我们表明如果至少存在三个气泡,它们作为气泡之间分离距离函数的共振频率有可能经历避免交叉。此外,通过将注意力集中在振荡相位上,并基于对耦合气泡的跃迁频率[M. Ida,《物理快报A》297, 210 (2002); 《日本物理学会杂志》71, 1214 (2002)]的分析,我们表明在避免交叉区域的某一点,气泡之间会发生明显的状态交换,在该点三气泡系统的一个共振频率与一个不对应于共振频率的跃迁频率相交。