论文标题

所有范德华的整合纳米光子学

All van der Waals Integrated Nanophotonics

论文作者

Ling, Haonan, Li, Renjie, Davoyan, Artur R.

论文摘要

从遥感和通信到计算和量子信息处理,集成的光学器件是广泛系统的核心。对较小和更节能的结构的需求刺激了寻找更高级材料平台的搜索。在这里,我们提出了一个全范德华光子学的概念,在其中我们表明电子散装过渡金属二甲藻(TMDC)半导体非常适合设计纳米级和集成光子学的关键光学组件。具体而言,我们从理论上证明,由于近红外和电信频带跨近红外和电信频带高的折射率高,由大量TMDC制成的组件可能会超过常规3D半导体(例如SI和III/vs)制成的传统3D半导体。我们讨论了几个关键的量子和经典的光学组件,并表明大量的TMDC可能为较小的占地设备,更节能的电气光学调节器和更强的量子光材料相互作用铺平道路。增强的光学性能,易于集成和多种材料选择表明,大量TMDC可以补充,并可能取代现有的集成光子系统。

Integrated optics is at the heart of a wide range of systems from remote sensing and communications to computing and quantum information processing. Demand for smaller and more energy efficient structures stimulates search for more advanced material platforms. Here, we propose a concept of an all van der Waals photonics, where we show that electronically bulk transition metal dichalcogenide (TMDC) semiconductors are well fitted for the design of key optical components for nanoscale and integrated photonics. Specifically, we demonstrate theoretically that owing to low optical loss and high refractive index across near-infrared and telecom frequency bands, components made of bulk TMDCs can potentially outperform counterparts made of conventional 3D semiconductors, such as Si and III/Vs. We discuss several key quantum and classical optical components and show that bulk TMDCs may pave the way to smaller footprint devices, more energy efficient electro-optical modulators, and stronger quantum light-materials interaction. Enhanced optical performance, ease of integration, and a wide selection of materials suggest that bulk TMDCs may complement and, potentially, replace existing integrated photonics systems.

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