Publication | Open Access
Particle manipulation by a non-resonant acoustic levitator
62
Citations
19
References
2015
Year
Biomedical AcousticsAeroacousticsEngineeringParticle ManipulationPhysicsPhysical AcousticAcoustic MetamaterialMechanical EngineeringTransducer PrincipleMechanical SystemsAcoustic PropagationAcoustic TweezerUltrasoundUltrasonic TransducerVibration ControlAcoustic Radiation ForceLevitated ParticleMicromachined Ultrasonic Transducer
We present the analysis of a non-resonant acoustic levitator, formed by an ultrasonic transducer and a concave reflector. In contrast to traditional levitators, the geometry presented herein does not require the separation distance between the transducer and the reflector to be a multiple of half wavelength. The levitator behavior is numerically predicted by applying a numerical model to calculate the acoustic pressure distribution and the Gor'kov theory to obtain the potential of the acoustic radiation force that acts on a levitated particle. We also demonstrate that levitating particles can be manipulated by controlling the reflector position while maintaining the transducer in a fixed position.
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