论文标题

集成光子学的分层和二维材料的折射用途

Refractive uses of layered and two-dimensional materials for integrated photonics

论文作者

Singh, Akshay, Jo, Seong Soon, Li, Yifei, Wu, Changming, Li, Mo, Jaramillo, R.

论文摘要

科学界见证了对分层的研究(即二维2D)材料的巨大扩展,最近对光子学应用程序的应用越来越重视。在光子综合电路的限制几何形状中操纵光特别令人兴奋,其中关键材料的特性包括强和可控的光 - 反物相互作用和有限的光学损失。分层材料具有可调的光学特性,具有对电镜的有希望的相位,以及一系列多晶型物,这些材料基于相变功能,为高度扰动的光子积分设备提供了丰富的设计空间。所有这些特征都表现在具有光子与光子相关的近红外(NIR)光谱带($ \ sim $ 0.5-1 eV)上方的材料中,这意味着它们可以在折光(即非吸收性)应用中利用。

The scientific community has witnessed tremendous expansion of research on layered (i.e. two-dimensional, 2D) materials, with increasing recent focus on applications to photonics. Layered materials are particularly exciting for manipulating light in the confined geometry of photonic integrated circuits, where key material properties include strong and controllable light-matter interaction, and limited optical loss. Layered materials feature tunable optical properties, phases that are promising for electro-optics, and a panoply of polymorphs that suggest a rich design space for highly-nonperturbative photonic integrated devices based on phase-change functionality. All of these features are manifest in materials with band gap above the photonics-relevant near-infrared (NIR) spectral band ($\sim$ 0.5 - 1 eV), meaning that they can be harnessed in refractive (i.e. non-absorptive) applications.

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