Holographic acoustic elements for manipulation of levitated objects

Голографические акустические элементы для манипулирования левитирующими объектами
Asier Marzo, Bruce W. Drinkwater, Sue Ann Seah, Sriram Subramanian, Deepak Ranjan Sahoo, Benjamin Long
2015-10-27

acoustic levitationacoustic tweezersholographic acoustic elementstractor beamsultrasonic phased array
Sound can levitate objects of different sizes and materials through air, water and tissue. This allows us to manipulate cells, liquids, compounds or living things without touching or contaminating them. However, acoustic levitation has required the targets to be enclosed with acoustic elements or had limited manoeuvrability. Here we optimize the phases used to drive an ultrasonic phased array and show that acoustic levitation can be employed to translate, rotate and manipulate particles using even a single-sided emitter. Furthermore, we introduce the holographic acoustic elements framework that permits the rapid generation of traps and provides a bridge between optical and acoustical trapping. Acoustic structures shaped as tweezers, twisters or bottles emerge as the optimum mechanisms for tractor beams or containerless transportation. Single-beam levitation could manipulate particles inside our body for applications in targeted drug delivery or acoustically controlled micro-machines that do not interfere with magnetic resonance imaging.
1
Acoustic tweezer, twister, and bottle structures emerge as optimal mechanisms for tractor-beam operation and containerless particle transportation.
2
Optimized phase control of an ultrasonic phased array enables levitation, translation, rotation, and manipulation of particles using a single-sided emitter.
3
Single-beam acoustic levitation could manipulate particles inside the body, supporting targeted drug delivery and acoustically controlled micromachines compatible with magnetic resonance imaging.
4
The approach addresses prior limitations requiring enclosed acoustic elements or offering limited manoeuvrability in acoustic levitation.
5
The holographic acoustic elements framework enables rapid generation of acoustic traps and connects optical trapping concepts with acoustical trapping.

levitated particles and objects manipulated by single-sided ultrasonic phased arrays

acoustic levitation and contactless manipulation, including translation, rotation, trapping and containerless transport, enabled by optimized holographic phase patterns

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2015-10-27
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Authors
Asier Marzo
Bruce W. Drinkwater
Sue Ann Seah
Sriram Subramanian
Deepak Ranjan Sahoo
Benjamin Long
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