Published December 1, 2024 | Version v1
Journal article Open

Efficient Snell's law solution for generating robust acoustic tweezers in dual-layered media

  • 1. North Dakota State University
  • 2. University of Chicago
  • 3. Michigan Technological University
  • 4. University of South Florida

Description

Acoustic tweezers can trap and manipulate a target along a desired path without physical contact. Potential applications of this technology may require the propagation of acoustic waves through non-homogeneous media. It is typically assumed that the acoustic impedance of media is the same. However, this assumption leads to reduced efficiency in both the trapping accuracy and strength of the acoustic tweezers. In this study, we propose a method to derive phases driving an 8x8 array of ultrasonic transducers using generalized Snell's law to account for the variation in the speed of sound between media layers of planar or non-planar interfaces. The results indicate that the tweezers formed with our approach maintain their patterns and trapping capability at selected trapping locations. In addition, our method significantly enhances the trapping accuracy and force, achieving up to ten times greater force and more accurate alignment with the selected trapping points compared to the previous method that assumes a uniform speed of sound.

Data availability

The original contributions presented in the study are included in the article/Supplementary Material. Further inquiries can be directed to the corresponding author.

Files

Efficient-Snells-law-solution-for-generating-robust-acoustic-tweezers-in-dual-layered-media.pdf

Files (6.9 MB)

Name Size Download all
Supplementary material
md5:22875d7b37b113be5ebc65e8cfa9b3b4
2.9 MB Download
Article
md5:6390bd770884b8dfbe54e98a415d0215
4.0 MB Preview Download

Additional details

Identifiers

DOI
10.3389/facou.2024.1485372
Other
oai:uchicago.tind.io:14213

UChicago Information

Division(s)
Biological Sciences Division
Department(s)
Surgery