Farhat Mohamed, Achaoui Younes, Martínez Julio Andrés Iglesias, Addouche Mahmoud, Wu Ying, Khelif Abdelkrim
Computer, Electrical, and Mathematical Sciences and Engineering Division, King Abdullah University of Science and Technology (KAUST), Thuwal, 23955-6900, Saudi Arabia.
Institut FEMTO-ST, CNRS UMR 6174, University Bourgogne Franche-Comté, 15B Avenue des Montboucons, Besançon Cedex, 25000, France.
Adv Sci (Weinh). 2024 Sep;11(33):e2402917. doi: 10.1002/advs.202402917. Epub 2024 Jul 4.
The confinement of waves in open systems represents a fundamental phenomenon extensively explored across various branches of wave physics. Recently, significant attention is directed toward bound states in the continuum (BIC), a class of modes that are trapped but do not decay in an otherwise unbounded continuum. Here, the theoretical investigation and experimental demonstration of the existence of quasi-bound states in the continuum (QBIC) for ultrasonic waves are achieved by leveraging an elastic Fabry-Pérot metasurface resonator. Several intriguing properties of the ultrasound quasi-bound states in the continuum that are robust to parameter scanning are unveiled, and experimental evidence of a remarkable Q-factor of 350 at ≈1 MHz frequency, far exceeding the state-of-the-art using a fully acoustic underwater system is presented. The findings contribute novel insights into the understanding of BIC for acoustic waves, offering a new paradigm for the design of efficient, ultra-high Q-factor ultrasound devices.
开放系统中的波的限制是波物理学各个分支广泛探索的一种基本现象。最近,人们将大量注意力投向了连续统中的束缚态(BIC),这是一类被捕获但在其他方面无界的连续统中不会衰减的模式。在此,通过利用弹性法布里 - 珀罗超表面谐振器实现了对超声波连续统中准束缚态(QBIC)存在的理论研究和实验验证。揭示了连续统中超声准束缚态的几个对参数扫描具有鲁棒性的有趣特性,并给出了在约1 MHz频率下Q因子高达350的实验证据,这远远超过了使用全声学水下系统的现有技术水平。这些发现为理解声波的BIC提供了新的见解,为高效、超高Q因子超声设备的设计提供了新的范例。