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Terahertz quasi-perfect vortex beam with integer-order and fractional-order generated by spiral spherical harmonic axicon

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【作者】 涂思语刘德峰刘劲松杨振刚王可嘉

【Author】 Si-Yu Tu;De-Feng Liu;Jin-Song Liu;Zhen-Gang Yang;Ke-Jia Wang;Wuhan National Laboratory for Optoelectronics,School of Optical and Electronic Information,Huazhong University of Science and Technology;AVIC Beijing Changcheng Aeronautical Measurement and Control Technology Research Institute;

【通讯作者】 王可嘉;

【机构】 Wuhan National Laboratory for Optoelectronics,School of Optical and Electronic Information,Huazhong University of Science and TechnologyAVIC Beijing Changcheng Aeronautical Measurement and Control Technology Research Institute

【摘要】 We propose a new method to generate terahertz perfect vortex beam with integer-order and fractional-order. A new optical diffractive element composed of the phase combination of a spherical harmonic axicon and a spiral phase plate is designed and called spiral spherical harmonic axicon. A terahertz Gaussian beam passes through the spiral spherical harmonic axicon to generate a terahertz vortex beam. When only the topological charge number carried by spiral spherical harmonic axicon increases, the ring radius of terahertz vortex beam increases slightly, so the beam is shaped into a terahertz quasi-perfect vortex beam. Importantly, the terahertz quasi-perfect vortex beam can carry not only integer-order topological charge number but also fractional-order topological charge number. This is the first time that vortex beam and quasi-perfect vortex beam with fractional-order have been successfully realized in terahertz domain and experiment.

【Abstract】 We propose a new method to generate terahertz perfect vortex beam with integer-order and fractional-order. A new optical diffractive element composed of the phase combination of a spherical harmonic axicon and a spiral phase plate is designed and called spiral spherical harmonic axicon. A terahertz Gaussian beam passes through the spiral spherical harmonic axicon to generate a terahertz vortex beam. When only the topological charge number carried by spiral spherical harmonic axicon increases, the ring radius of terahertz vortex beam increases slightly, so the beam is shaped into a terahertz quasi-perfect vortex beam. Importantly, the terahertz quasi-perfect vortex beam can carry not only integer-order topological charge number but also fractional-order topological charge number. This is the first time that vortex beam and quasi-perfect vortex beam with fractional-order have been successfully realized in terahertz domain and experiment.

【基金】 Project supported by the Fundamental Research Funds for the Central Universities,China (Grant No.2017KFYXJJ029)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2024年01期
  • 【分类号】O431.1
  • 【下载频次】3
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