通过结合二维层状氧化石墨烯薄膜实现高性能集成偏光片。

arXiv: Optics Pub Date : 2020-10-09 DOI:10.1117/12.2544584
Jiayang Wu, Yunyi Yang, Yuning Zhang, Y. Qu, Xingyuan Xu, L. Jia, Yao Liang, S. Chu, B. Little, R. Morandotti, B. Jia, D. Moss
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引用次数: 0

摘要

偏振器和偏振选择谐振腔(如环形谐振器、光栅)是摄影、相干光学检测、偏振分复用、光学传感和液晶显示等应用的关键部件。我们展示了波导偏振器和偏振判别微环谐振器(mrr)通过集成二维氧化石墨烯(GO)层状薄膜。我们通过一种基于溶液的、一层接一层的无转移涂层方法,结合光刻和剥离技术,实现了对集成在光子器件上的薄膜的厚度、位置和尺寸的精确控制。这克服了二维材料层转移方法的局限性,是制造与二维材料结合的集成光子器件的重大进步。我们测量了不同薄膜厚度和长度对波长、偏振和功率的影响,测量了~ 53.8 dB的高偏振相关损耗(PDL)。对于氧化石墨烯涂层的MRRs,我们实现了8.3 db的TE/TM极化消光比差异。我们还测量了二维层状氧化石墨烯薄膜的线性光学特性,这些特性产生了氧化石墨烯薄膜的材料损耗各向异性,以及薄膜损耗各向异性对偏振依赖模式重叠的相对贡献。我们的研究结果为层状氧化石墨烯薄膜从二维行为到准块状行为的转变提供了有趣的物理见解,并证实了基于氧化石墨烯的集成极化选择器件的高性能。
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High performance integrated polarizers achieved by incorporating 2D layered graphene oxide films.
Polarizers and polarization selective resonant cavities (e.g., ring resonators, gratings), are key components for applications to photography, coherent optical detection, polarization-division-multiplexing, optical sensing and liquid crystal displays. We demonstrate waveguide polarizers and polarization discriminating micro-ring resonators (MRRs) by integrating them with 2D graphene oxide (GO) layered thin films. We achieve precise control of the thickness, placement, and size of the films integrated onto photonic devices with a solution based, layer-by-layer transfer-free coating method combined with photolithography and lift-off. This overcomes limitations of layer transfer methods for 2D materials and is a significant advance to manufacturing integrated photonic devices incorporated with 2D materials. We measure the waveguide polarizer for different film thicknesses and lengths versus wavelength, polarization, and power, measuring a high polarization dependent loss (PDL) of ~ 53.8 dB. For GO-coated MRRs, we achieve an extinction ratio difference for TE/TM polarizations of 8.3-dB. We also present measurements of the linear optical properties of 2D layered GO films that yield the material loss anisotropy of the GO films and relative contribution of film loss anisotropy versus polarization-dependent mode overlap. Our results offer interesting physical insights into the transition of the layered GO films from 2D behaviour to quasi bulk like behavior and confirm the high performance of GO based integrated polarization selective devices.
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