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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Transmission blazed-binary gratings for visible light operation: performances and interferometric characterization
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Transmission blazed-binary gratings for visible light operation: performances and interferometric characterization

机译:透射式二元光栅用于可见光操作:性能和干涉特性

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摘要

We present experimental results obtained for blazed-binary gratings with periods between 1.6λ and 114.7λ blazed at λ = 633 nm. These gratings are composed of subwavelength pillars with pulse-width modulation within the periods. For small periods up to 3λ, the measured efficiencies agree well with the theoretical predictions. But for large periods, the discrepancy between the theoretical and experimental efficiencies is significant, reaching almost 20% for the grating with the largest period. In order to identify the origin of this discrepancy, a Mach-Zehnder interferometer dedicated to the characterization of small-size gratings (≈400 * 400 μm~2) is set up. The interferometric characterization combined with scanning-electron-microscope observations reveal that the 20% discrepancy is due to a deficiency of the fabrication process for the smallest pillars and to an overall fabrication of pillars with actual widths smaller than their nominal values. These two fabrication errors can reasonably be expected to be eliminated in future work.
机译:我们介绍了在λ= 633 nm处闪耀的1.6λ和114.7λ之间的闪耀二进制光栅获得的实验结果。这些光栅由周期内具有脉宽调制的亚波长柱组成。对于小于3λ的小周期,测得的效率与理论预测非常吻合。但是在很大的时期内,理论效率和实验效率之间的差异是巨大的,最大周期的光栅几乎达到20%。为了识别这种差异的根源,建立了专用于表征小尺寸光栅(≈400* 400μm〜2)的马赫曾德尔干涉仪。干涉特征与扫描电子显微镜观察相结合,发现20%的差异是由于最小的柱子的制造工艺不足以及实际宽度小于其标称值的柱子的整体制造所致。可以合理地预期这两个制造错误将在以后的工作中消除。

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