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Two-Photon Direct Laser Writing of Inverse-Designed Free-Form Near-Infrared Polarization Beamsplitter

机译:逆设计的自由形式近红外偏振分束器的两光子直接激光写入

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This paper presents an inverse-designed 3D-printed polymer-based broadband free-form polarization beamsplitter in the near-infrared. A computational inverse-design method is used to design a thin free-form meta-grating to split normally incident light with different polarizations to different diffraction orders, one toward the left first order and one toward the right first order. The grating is 3D-printed using two-photon direct laser writing. Polarization splitting behavior is experimentally observed in the near-infrared region for wavelengths of 1.3 and 1.55 mu m, and with performance metrics close to the simulation values. The proposed platform combining inverse-design and 3D-printing can be extended to the design, fabrication, and integration of multiple broadband photonic structures to build devices with complex functionalities.
机译:本文提出了一种反向设计的近红外3D打印聚合物基宽带自由形式偏振分束器。计算逆设计方法用于设计薄的自由形式的元光栅,以将具有不同偏振的法向入射光分成不同的衍射级,一个朝左一阶,一个朝右一阶。使用两光子直接激光写入技术对光栅进行3D打印。在波长为1.3和1.55μm的近红外区域实验观察到偏振分裂行为,并且性能指标接近仿真值。所提出的将逆设计和3D打印相结合的平台可以扩展到多个宽带光子结构的设计,制造和集成,以构建具有复杂功能的设备。

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