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Near-Field Focusing With Subwavelength Thickness Metalenses via Electromagnetic Susceptibility Models

Near-Field Focusing With Subwavelength Thickness Metalenses via Electromagnetic Susceptibility Models
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摘要 The design mentality of an optimal metalens model, based on the electromagnetic susceptibility, a synthesis of subwavelength-thick metasurfaces (MSs) is presented in this paper. First, based on the finite difference method of generalized sheet transition conditions, the surface susceptibility function of the MS with spatial discontinuities can be determined. Then, the paper analyzed the remaining corresponding physical field conditions for the scale of metalens. In order to adapt to the physical limitations encountered in the near-field focusing of the metalens, a standard parabolic phase design is proposed in this paper, and its upsides and downsides of the two-phase processing in different aspects are compared. Using COMSOL software with numerical simulation, it can be seen that the standard design can easily obtain high resolution in the near field, while the focusing effect is more stable when the focal length is small by the parabolic phase design. The design mentality of an optimal metalens model, based on the electromagnetic susceptibility, a synthesis of subwavelength-thick metasurfaces (MSs) is presented in this paper. First, based on the finite difference method of generalized sheet transition conditions, the surface susceptibility function of the MS with spatial discontinuities can be determined. Then, the paper analyzed the remaining corresponding physical field conditions for the scale of metalens. In order to adapt to the physical limitations encountered in the near-field focusing of the metalens, a standard parabolic phase design is proposed in this paper, and its upsides and downsides of the two-phase processing in different aspects are compared. Using COMSOL software with numerical simulation, it can be seen that the standard design can easily obtain high resolution in the near field, while the focusing effect is more stable when the focal length is small by the parabolic phase design.
作者 Zhenguan Fu Zhenguan Fu(College of Science, University of Shanghai for Science and Technology, Shanghai, China)
机构地区 College of Science
出处 《Optics and Photonics Journal》 2021年第7期197-209,共13页 光学与光子学期刊(英文)
关键词 GSTCs Metalens Near-Field Focusing SUSCEPTIBILITY GSTCs Metalens Near-Field Focusing Susceptibility

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