Generation of acoustic vortices and acousto-optic interactions with acoustic vortex beams
Генерация акустических вихрей и акустооптические взаимодействия с акустическими вихревыми пучками
2023-03-21
SCID: 54.1/yqq3rp9r
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acoustic vortex beamsacousto-optic diffractionfork-like acoustic gratingoptical diffraction splittingspiral phase plate
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Abstract (AI)
We demonstrate the generation of acoustic vortex beams with the aid of an acoustic spiral phase plate and an acoustic grating having a fork-like bifurcation of its slits. The acoustic vortex beam generated in this manner influences the particles floating on a water surface and rotates them. Our experiments show that the intensity of the acoustic vortex beam increases from zero in its center to a certain maximal value near the shell of the beam. The phase of the beam changes by the angle 2 π whenever the azimuthal angle is changed by the same value. We also study acousto-optic diffraction of the optical beam by the acoustic beam bearing a vortex and demonstrate that each of the appropriate diffraction maxima are split into two maxima. The latter correspond to diffraction by the elementary acoustic rays which are close to the opposite edges of the acoustic vortex beam. A dark region between the maxima appears due to destructive interference of the elementary optical rays originated from the diffraction by the opposite sides of the acoustic vortex beam, which are phase-shifted by π .
Key Findings
1
A dark region between split maxima results from destructive interference between optical contributions phase-shifted by π.
2
Acoustic vortex beams are generated using an acoustic spiral phase plate and a forked acoustic grating.
3
Acousto-optic diffraction from the vortex beam splits each relevant diffraction maximum into two maxima associated with opposite beam edges.
4
The beam intensity is zero at the center and reaches a maximum near its outer shell, while its phase winds by 2π around the azimuth.
5
The generated vortex beam rotates particles floating on a water surface, demonstrating transfer of orbital angular momentum.
Research Object
Acoustic vortex beams and their acousto-optic interaction with optical beams
Research Subject
Generation, intensity and phase structure, particle-rotation effects, and vortex-induced splitting and interference in optical diffraction maxima
Publication Details
Publication Date
2023-03-21
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