Subwavelength mie-resonant selenium resonators for mid-infrared meta-optics

Danveer Singh
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Abstract

Efficient light manipulation at subwavelength scales in the mid-infrared (MIR) region is essential for various applications and can be harnessed from intrinsic low-loss dielectric resonators. Here, we demonstrate the fabrication of truncated spherical selenium (Se) resonators with tunable high-quality (Q) factor Mie resonances. Large area amorphous Se subwavelength resonators of varying sizes were grown on different substrates, using a novel CVD process. We demonstrate size-tunable Mie resonances spanning the 2-16 µm range, for single isolated resonators and large area ensembles, respectively. We show strong tunable absorption resonances (90%) in ensembles of resonators in a significantly broad MIR range. Moreover, by coupling resonators to epsilon-near-zero (ENZ) substrates, we engineer high-Q resonances as high as Q=40. These findings open up new possibilities in meta-atom paints, anti-reflective coatings, detection technology, and large area metasurface fabrications.
用于中红外元光学的亚波长微波谐振硒谐振器
在中红外(MIR)区域的亚波长尺度上进行有效的光操作对于各种应用是必不可少的,并且可以从固有的低损耗介质谐振器中利用。在这里,我们展示了具有可调谐高质量(Q)因子Mie共振的截顶球形硒(Se)谐振器的制造。采用一种新型的CVD工艺,在不同的衬底上生长了不同尺寸的大面积非晶硒亚波长谐振腔。我们展示了跨越2-16 μ m范围的大小可调的Mie共振,分别用于单个隔离谐振器和大面积集成。我们展示了强可调谐的吸收共振(90%)在一个显着广泛的MIR范围内的谐振器合奏。此外,通过将谐振器耦合到epsilon-near-zero (ENZ)衬底,我们设计了高达Q=40的高Q谐振。这些发现为元原子涂料、抗反射涂层、检测技术和大面积超表面制造开辟了新的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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