4.6 Article

Generation of a modulated versatile spiral beam with varying intensity distribution along the propagation

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OPTICS EXPRESS
卷 31, 期 24, 页码 40620-40629

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Optica Publishing Group
DOI: 10.1364/OE.505126

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A new type of versatile spiral beam (VSB) is proposed, which exhibits twisted properties and optical bottle structure. By adjusting different parameters, the characteristics of the VSB can be customized. The advantages of VSB in guiding and capturing microparticles are demonstrated by experiments.
A new type of versatile spiral beam (VSB) is generated based on the competition mechanism between the self-focusing property of ring Airy beam and metalens phase distribution, which exhibits twisted properties and optical bottle structure along the propagation direction. The number of spiral lobes, rotation direction, shape and magnification times on the cross section of the proposed beam can be customized by flexibly tuning diffraction distance, topological charge and constant parameter. Therefore, the VSB can be viewed as tunable three-dimensional (3D) spiral beam, and our scheme has the superiority with more diverse and tunable intensity distribution. The properties of intensity distribution variation depended on the propagation distance and topological charge are demonstrated convincingly by employing the Poynting vector intuitive presentation the energy flow. The VSBs with the aid of above-mentioned properties are beneficial for guiding microparticles along the designed spiral path and capturing multiple microparticles into the closed dark regions. Finally, the modulated spiral beams are implemented as tool for particle manipulation in the three dimensional space to demonstrate the advantages of the modulated spiral beam and we can observe the stable trapping of the particles.

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