Primary aberration optimization for double-plane symmetric beam shaping systems using a pair of curved reference surfaces

The geometric aberration of centered refracting double-plane symmetric optical systems (DPSOS) is investigated. For DPSOS with different defocus values in the tangential plane and the sagittal plane (astigmatic wavefront), a pair of curved reference surfaces which vanishes the quadratic terms of the...

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Veröffentlicht in:Optics express 2022-02, Vol.30 (5), p.7664-7676
Hauptverfasser: Tan, Qin-Wen, Guo, Ya-Ding, Li, Yang, Zhang, Lin, Shao, Chong-Feng, Cui, Da-Fu, Peng, Qin-Jun
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container_issue 5
container_start_page 7664
container_title Optics express
container_volume 30
creator Tan, Qin-Wen
Guo, Ya-Ding
Li, Yang
Zhang, Lin
Shao, Chong-Feng
Cui, Da-Fu
Peng, Qin-Jun
description The geometric aberration of centered refracting double-plane symmetric optical systems (DPSOS) is investigated. For DPSOS with different defocus values in the tangential plane and the sagittal plane (astigmatic wavefront), a pair of curved reference surfaces which vanishes the quadratic terms of the optical path difference (OPD) between a general ray and a reference ray are deduced. With the curved reference surfaces, the primary (fourth-order) wave aberration function for DPSOS is calculated and analyzed, which can be used for beam shaping designs with astigmatic input wavefront, such as slab lasers and semiconductor lasers. Further, the proposed curved reference surfaces can be applied to analyze the aberrations of general DPSOS.
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title Primary aberration optimization for double-plane symmetric beam shaping systems using a pair of curved reference surfaces
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