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Subwavelength-grating metamaterial integrated devices for the near-and mid-infrared wavelengths

机译:用于近红外波长的亚波长光栅超材料集成装置

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The subwavelength patterning of planar structures is now widely used in silicon photonics, enabling the synthesis of metamaterials with engineered optical properties, including refractive index, dispersion, and anisotropy. A wide range of integrated devices based on subwavelength grating (SWG) metamaterials have been demonstrated at telecom wavelengths, some with unprecedented performance. The benefits of SWG metamaterials can be leveraged not only in the typical telecom near-infrared bands, but also at the longer mid-infrared wavelengths. In this invited presentation, we will review our latest developments in SWG-based silicon and germanium photonic devices for the near- and the mid-infrared.
机译:平面结构的亚波长图案现在广泛用于硅光子,能够合成具有工程化光学性质的超材料,包括折射率,分散和各向异性。 在电信波长下已经证明了基于亚壳长度光栅(SWG)超材料的广泛集成装置,一些具有前所未有的性能。 SWG超材料的益处不仅可以在典型的电信近红外条带中利用,而且可以在较长的中红外波长下杠杆。 在这邀请的介绍中,我们将审查我们在基于SWG的硅和锗光子器件中的最新动态,用于近乎和中红外线。

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