论文标题

有限系统中的拓扑超级电池共鸣

Topological Supercavity Resonances In the Finite System

论文作者

Huang, Lujun, Jia, Bin, Chiang, Yan Kei, Huang, Sibo, Shen, Chen, Deng, Fu, Yang, Tianzhi, Powell, David A, Li, Yong, Miroshnichenko, Andrey E

论文摘要

声学谐振腔在现代声学系统中起着至关重要的作用。它们为噪声控制,生物医学超声波和水下通信带来了许多基本应用。对于某些应用,例如高分辨率声传感器和声学激光器,超高质量因子共振非常需要。在这里,我们从理论上提出并在实验上展示了在耦合的声学谐振系统中,这是由几何空间中的连续体(BIC)中的绑定状态引起的。我们通过在BIC合并之前和之后明确计算其拓扑费来证明它们的拓扑起源,并伴有指控歼灭。与其他类型的BIC相比,它们对制造不完美带来的扰动是可靠的。此外,我们发现,这种超级腔模式可以与弗里德里奇·韦特根(Friedrich-Wintgen)BIC相连,并由夹在两个矩形(或圆形)波导之间的整个矩形(cuboid)谐振器支撑,并构建了更多的超级狂热模式。然后,我们在实验上确认了这种独特的现象:通过测量其反射光谱,将BIC的移动,合并和消失消失,这与数值模拟和模式演化的理论预测很好地一致。最后,鉴于声学和电磁波的类似波性质,这种合并的BIC也可以在耦合的光子谐振器系统中构建。我们的结果可能会在声学和光子学中发现令人兴奋的应用,例如增强的声发射,滤波和传感。

Acoustic resonant cavities play a vital role in modern acoustical systems. They have led to many essential applications for noise control, biomedical ultrasonics, and underwater communications. The ultrahigh quality-factor resonances are highly desired for some applications like high-resolution acoustic sensors and acoustic lasers. Here, we theoretically propose and experimentally demonstrate a new class of supercavity resonances in a coupled acoustic resonators system, arising from the merged bound states in the continuum (BICs) in geometry space. We demonstrate their topological origin by explicitly calculating their topological charges before and after BIC merging, accompanied by charges annihilation. Comparing with other types of BICs, they are robust to the perturbation brought by fabrication imperfection. Moreover, we found that such supercavity modes can be linked with the Friedrich-Wintgen BICs supported by an entire rectangular (cuboid) resonator sandwiched between two rectangular (or circular) waveguides, and thus more supercavity modes are constructed. Then, we fabricate these coupled resonators and experimentally confirm such a unique phenomenon: moving, merging, and vanishing of BICs by measuring their reflection spectra, which show good agreement with the numerical simulation and theoretical prediction of mode evolution. Finally, given the similar wave nature of acoustic and electromagnetic waves, such merged BICs also can be constructed in a coupled photonic resonator system. Our results may find exciting applications in acoustic and photonics, such as enhanced acoustic emission, filtering, and sensing.

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