• Photonics Research
  • Vol. 6, Issue 4, 228 (2018)
Sheng Liu1、†, Shuxia Qi1、†, Yi Zhang, Peng Li, Dongjing Wu, Lei Han, and Jianlin Zhao*
Author Affiliations
  • MOE Key Laboratory of Material Physics and Chemistry under Extraordinary Conditions, and Shaanxi Key Laboratory of Optical Information Technology, School of Science, Northwestern Polytechnical University, Xi’an 710129, China
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    DOI: 10.1364/PRJ.6.000228 Cite this Article Set citation alerts
    Sheng Liu, Shuxia Qi, Yi Zhang, Peng Li, Dongjing Wu, Lei Han, Jianlin Zhao. Highly efficient generation of arbitrary vector beams with tunable polarization, phase, and amplitude[J]. Photonics Research, 2018, 6(4): 228 Copy Citation Text show less

    Abstract

    We propose an efficient and robust method to generate tunable vector beams by employing a single phase-type spatial light modulator (SLM). With this method, a linearly polarized Gaussian beam can be converted into a vector beam with arbitrarily controllable polarization state, phase, and amplitude. The energy loss during the conversion is greatly reduced and depends mainly on the reflectivity of the SLM. We experimentally demonstrate that conversion efficiency of about 47% is achieved by using an SLM with reflectivity of 62%. Several typical vector beams, including cylindrical vector beams, vector beams on higher order Poincaré spheres, and arbitrary vector beams attached with phases and with tunable amplitude, are generated and verified experimentally. This method is also expected to create high-power vector beams and play important roles in optical fabrication and light trapping.
    |E=cos2θei(ϕ1+δϕ)eR+sin2θeiϕ2eL,(1)

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    |E=eiΨT(Θ)[cos(2θπ4)isin(2θπ4)],(2)

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    Ψ=(ϕ1+ϕ2)/2,(3a)

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    Θ=(ϕ1ϕ2)/2,(3b)

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    T(Θ)=[cosΘsinΘsinΘcosΘ].(3c)

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    |E=eiΨ[cosΘsinΘ].(4)

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    |E=cos2θeiφ0|Rl+sin2θeiφ0|Ll,(5)

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    ϕ1=ϕ2=n=1Nmnφn+φ0,(6)

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    ϕ1,2=(1sinc1E0)mod(Ψ±Θ+φg,2π),(7)

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    Sheng Liu, Shuxia Qi, Yi Zhang, Peng Li, Dongjing Wu, Lei Han, Jianlin Zhao. Highly efficient generation of arbitrary vector beams with tunable polarization, phase, and amplitude[J]. Photonics Research, 2018, 6(4): 228
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