Generation of a controllable multi-spiral beam by using the modulated helico-conical phases

Author:

Liu Shuo1ORCID,Zheng Yi1ORCID,Xiao Huiming1,Shan Shengxiang1ORCID,Liu Xuejuan2,Ahmad Sohail3ORCID,Rana Anwar Manzoor3ORCID,Cheng Shubo1ORCID,Yang Wenxing1ORCID,Tao Shaohua4ORCID

Affiliation:

1. School of Physics and Optoelectronic Engineering, Yangtze University 1 , Jingzhou, Hubei 434023, China

2. College of Physics and Engineering, Chengdu Normal University 2 , Chengdu, Sichuan 611130, China

3. Institute of Physics, Bahauddin Zakariya University 3 , Multan 66000, Pakistan

4. School of Physics and Electronics, Central South University 4 , Changsha, Hunan 410083, China

Abstract

In this Letter, we propose a kind of controllable multi-spiral beam that can be generated using the modulated helico-conical phases with an axicon. The focal-field intensity distributions of the multi-spiral beams were investigated theoretically and experimentally. The relative distance between the two adjacent sub-beams of the multi-spiral beams was discussed based on the approximate mapping of the local spatial frequency. The result demonstrated that the relative distance between the two adjacent sub-beams was linearly dependent on the radial factor gradient Δα of the two sub-beams. When the radial factor gradient Δα is equal to a critical value (i.e., Δαc), the multi-spiral beam can be changed into an Archimedean spiral-shaped beam (the sub-beams of multi-spiral beams will be connected with each other). In addition, the dependence of the topological charge l on the critical radial factor gradient Δαc is also discussed. The result demonstrates that the critical radial factor gradient Δαc has a linear dependence on the topological charge l. The experimental results are in good agreement with the numerical simulation results. The controllable multi-spiral beams are potentially applied in three-dimensional optical micro-manipulation and information transmission.

Funder

National Natural Science Foundation of China

Nature Science Foundation of Hubei Province of China

Key Laboratory of Metallurgical Equipment and Control Technology, Ministry of Education, Wuhan University of Science and Technology

Publisher

AIP Publishing

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