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首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Acoustic wave confinement in two-dimensional phononic crystal with multiple nested resonators
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Acoustic wave confinement in two-dimensional phononic crystal with multiple nested resonators

机译:具有多个嵌套谐振器的二维声子晶体中的声波限制

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摘要

In this research, a novel phononic crystal (PC) is investigated theoretically to enhance acoustic pressure confinement. It consists of multiple nested resonators based on a tapered configuration. Nested phononic crystal resonator (NPCR) can enhance the acoustic pressure amplification at resonant cavity to a great degree better than the traditional one with same dimensions. The resonant frequency of NPCR is mainly located within outermost phononic crystal resonator’s (PCR) band gap. Meanwhile, it does not move significantly to high frequency with the addition of inner tapered resonators. The enhanced acoustic pressure resonant amplification is attributed to the improvement of the confinement mode owing to the nested structure working as a taper. Then effects of geometrical dimensions of inner PCRs on acoustic confinement are studied. It shows that resonant frequency and resonant acoustic pressure can be affected by the geometric parameters. NPCR has stronger acoustic confinement effects, which are conducive to improve acoustic sensing sensitivity, acoustic signal frequency resolution and acoustic energy harvesting efficiency.
机译:在本研究中,理论上,研究了一种新型呼吸晶体(PC)以增强声压限制。它由基于锥形配置的多个嵌套谐振器组成。嵌套的呼吸晶体谐振器(NPCR)可以提高谐振腔处的声压放大,比具有相同尺寸的传统腔更好的程度。 NPCR的谐振频率主要位于最外面的呼吸晶体谐振器(PCR)带隙内。同时,通过添加内锥形谐振器,它不会显着地移动到高频。增强的声压谐振放大归因于由于嵌套结构作为锥度的嵌套结构而改善了限制模式。然后,研究了内部PCR对声学限制的几何尺寸的影响。它表明,谐振频率和谐振声压力可能受到几何参数的影响。 NPCR具有更强的声学监禁效果,有利于提高声学传感灵敏度,声学信号频率分辨率和声能收割效率。

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