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Generating arbitrary ultrasound fields with tailored optoacoustic surface profiles
Author(s) -
Michael Brown,
Daniil I. Nikitichev,
Bradley E. Treeby,
Ben Cox
Publication year - 2017
Publication title -
applied physics letters
Language(s) - English
Resource type - Journals
eISSN - 1077-3118
pISSN - 0003-6951
DOI - 10.1063/1.4976942
Subject(s) - transducer , acoustics , computer science , optics , surface (topology) , surface acoustic wave , materials science , ranging , ultrasonic sensor , modulation (music) , ultrasound , physics , mathematics , geometry , telecommunications
Acoustic fields with multiple foci have many applications in physical acoustics ranging from particle manipulation to neural modulation. However, the generation of multiple foci at arbitrary locations in three-dimensional is challenging using conventional transducer technology. In this work, the optical generation of acoustic fields focused at multiple points using a single optical pulse is demonstrated. This is achieved using optically absorbing surface profiles designed to generate specific, user-defined, wavefields. An optimisation approach for the design of these tailored surface profiles is developed. This searches for a smoothly varying surface that will generate a high peak pressure at a set of target focal points. The designed surface profiles are then realised via a combination of additive manufacturing and absorber deposition techniques. Acoustic field measurements from a sample designed to generate the numeral “7” are used to demonstrate the design method.

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