Title of article
Axial and transverse acoustic radiation forces on a fluid sphere placed arbitrarily in Bessel beam standing wave tweezers Original Research Article
Author/Authors
F.G. Mitri، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2014
Pages
13
From page
158
To page
170
Abstract
The axial and transverse radiation forces on a fluid sphere placed arbitrarily in the acoustical field of Bessel beams of standing waves are evaluated. The three-dimensional components of the time-averaged force are expressed in terms of the beam-shape coefficients of the incident field and the scattering coefficients of the fluid sphere using a partial-wave expansion (PWE) method. Examples are chosen for which the standing wave field is composed of either a zero-order (non-vortex) Bessel beam, or a first-order Bessel vortex beam. It is shown here, that both transverse and axial forces can push or pull the fluid sphere to an equilibrium position depending on the chosen size parameter ka (where image is the wave-number and image the sphere’s radius). The corresponding results are of particular importance in biophysical applications for the design of lab-on-chip devices operating with Bessel beams standing wave tweezers. Moreover, potential investigations in acoustic levitation and related applications in particle rotation in a vortex beam may benefit from the results of this study.
Keywords
Acoustic radiation force , Acoustic levitation , Standing waves , Acoustic tweezers , Fluid sphere manipulation , Bessel beams
Journal title
Annals of Physics
Serial Year
2014
Journal title
Annals of Physics
Record number
1207154
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