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用于兆声波范围内亚波长聚焦的超薄声透镜的实现。

Realization of an ultrathin acoustic lens for subwavelength focusing in the megasonic range.

作者信息

Hyun Jaeyub, Kim Yong Tae, Doh Il, Ahn Bongyoung, Baik Kyungmin, Kim Se-Hwa

机构信息

Center for Medical Convergence Metrology, Korea Research Institute of Standards and Science (KRISS), 267 Gajeong-ro, Yuseong-gu, Daejeon, 34113, Republic of Korea.

Department of Medical Physics, Korea University of Science and Technology, 176 Gajeong-ro, Yuseong-gu, Daejeon, 34113, Republic of Korea.

出版信息

Sci Rep. 2018 Jun 14;8(1):9131. doi: 10.1038/s41598-018-27312-5.

Abstract

In this study, we report the first experimental realization of an ultrathin (0.14λ, λ = 1.482 mm means wavelength at 1 MHz in the water medium) subwavelength focusing acoustic lens that can surpass the Rayleigh diffraction limit (0.61λ/NA, NA means numerical aperture). It is termed a Super-Oscillatory Acoustic Lens (SOAL), and it operates in the megasonic range. The SOAL represents an interesting feature allowing the achievement of subwavelength focusing without the need to operate in close proximity to the object to be imaged. The optimal layout of the SOAL is obtained by utilizing a systematic design approach, referred to here as topology optimization. To this end, the optimization formulation is newly defined. The optimized SOAL is fabricated using a photo-etching process and its subwavelength focusing performance is verified experimentally via an acoustic intensity measurement system. From these measurements, we found that the proposed optimized SOAL can achieve superior focusing features with a Full Width at Half Maximum (FWHM) of ~0.40λ/NA ≃ 0.84 mm (for our SOAL, NA = 0.707) with the transmission efficiency of 26.5%.

摘要

在本研究中,我们报告了首个超薄(0.14λ,λ = 1.482 mm表示在水介质中1 MHz时的波长)亚波长聚焦声透镜的实验实现,该声透镜可超越瑞利衍射极限(0.61λ/NA,NA表示数值孔径)。它被称为超振荡声透镜(SOAL),并在兆声波范围内工作。SOAL具有一个有趣的特性,即无需在靠近待成像物体的位置操作就能实现亚波长聚焦。通过使用一种系统设计方法(这里称为拓扑优化)来获得SOAL的最佳布局。为此,重新定义了优化公式。使用光刻工艺制造优化后的SOAL,并通过声强测量系统对其亚波长聚焦性能进行了实验验证。从这些测量中,我们发现所提出的优化SOAL能够实现卓越的聚焦特性,半高宽(FWHM)约为0.40λ/NA ≃ 0.84 mm(对于我们的SOAL,NA = 0.707),传输效率为26.5%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8cc/6002413/3abe600e7b77/41598_2018_27312_Fig1_HTML.jpg

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