材料科学
声学
超声波传感器
传感器
声阻抗
宽带
压电
超材料
超声波
PMUT公司
阻抗匹配
电容式微机械超声换能器
带宽(计算)
波束宽度
光学
电阻抗
光电子学
计算机科学
物理
电信
复合材料
量子力学
天线(收音机)
作者
Zheng Li,Dan-Qing Yang,Shi-Lei Liu,Siyuan Yu,Ming‐Hui Lu,Jie Zhu,Shan-Tao Zhang,Ming-Wei Zhu,Xia-Sheng Guo,Hao-Dong Wu,Xinlong Wang,Yan-Feng Chen
摘要
Abstract High-quality broadband ultrasound transducers yield superior imaging performance in biomedical ultrasonography. However, proper design to perfectly bridge the energy between the active piezoelectric material and the target medium over the operating spectrum is still lacking. Here, we demonstrate a new anisotropic cone-structured acoustic metamaterial matching layer that acts as an inhomogeneous material with gradient acoustic impedance along the ultrasound propagation direction. When sandwiched between the piezoelectric material unit and the target medium, the acoustic metamaterial matching layer provides a broadband window to support extraordinary transmission of ultrasound over a wide frequency range. We fabricated the matching layer by etching the peeled silica optical fibre bundles with hydrofluoric acid solution. The experimental measurement of an ultrasound transducer equipped with this acoustic metamaterial matching layer shows that the corresponding −6 dB bandwidth is able to reach over 100%. This new material fully enables new high-end piezoelectric materials in the construction of high-performance ultrasound transducers and probes, leading to considerably improved resolutions in biomedical ultrasonography and compact harmonic imaging systems.
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