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Design of highly efficient transmission gratings with deep etched triangular grooves

机译:具有深蚀刻三角槽的高效透射光栅的设计

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摘要

The design of highly efficient fused silica transmission gratings with deep-etched triangular-shaped grooves in the -1st order diffraction is realized by the rigorous coupled wave analysis (RCWA). The antireflective effect of a subwavelength triangular-groove grating with gradient effective refractive index results in the higher diffraction efficiency (>99.9%). The performance of the presented gratings is clearly better than traditional rectangular and blazed ones. The gratings are designed under Littrow mounting at a wavelength of 1064 nm to be used in high-power laser systems. A detailed fabrication tolerance, covering not only the errors in height but also the errors in the lateral dimension, is demonstrated. The physical process of the diffraction characteristics for such a triangular-groove grating can be well explained by the simplified modal method based on two-beam interference of the first two propagating modes excited by the incident wave. Based on the fact that the transmittance derived from the modal method is in good agreement with that calculated by the RCWA, the simplified modal method can be effectively utilized as an easily designed tool of the triangular-shaped gratings.
机译:通过严格的耦合波分析(RCWA),实现了在-1阶衍射中具有深蚀刻三角形凹槽的高效熔融石英透射光栅的设计。具有有效折射率梯度的亚波长三角形凹槽光栅的抗反射效果导致更高的衍射效率(> 99.9%)。提出的光栅的性能明显优于传统的矩形和闪耀光栅。这些光栅是在Littrow安装下设计的,波长为1064 nm,可用于大功率激光系统。展示了详细的制造公差,不仅涵盖了高度误差,而且涵盖了横向尺寸误差。通过基于入射波激发的前两个传播模式的双光束干涉的简化模态方法,可以很好地解释这种三角形凹槽光栅的衍射特性的物理过程。基于从模态方法得出的透射率与RCWA计算的透射率非常吻合的事实,简化的模态方法可以有效地用作三角形光栅的易于设计的工具。

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