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Control of light-valley interactions in 2D transition metal dichalcogenides with nanophotonic structures

机译:控制在2 d light-valley交互过渡金属dichalcogenides与纳米光子结构

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Electronic valley in two-dimensional transition-metal dichalcogenides (2D TMDCs) offers a new degree of freedom for information storage and processing. The valley pseudospin can be optically encoded by photons with specific helicity, enabling the construction of electronic information devices with both high performance and low power consumption. Robust detection, manipulation and transport of the valley pseudospins at room temperature are still challenging because of the short lifetime of valley-polarized carriers and excitons. Integrating 2D TMDCs with nanophotonic objects such as plasmonic nanostructures provides a competitive solution to address the challenge. The research in this field is of practical interest and can also present rich physics of light-matter interactions. In this minireview, recent progress on using nanophotonic strategies to enhance the valley polarization degree, especially at room temperature, is highlighted. Open questions, major challenges, and interesting future developments in manipulating the valley information in 2D semiconductors with the help of nanophotonic structures will also be discussed.
机译:在二维电子谷过渡金属dichalcogenides (2 d TMDCs)提供了一个新的信息自由度存储和处理。被光子与特定的光学编码螺旋性,使电子的建设信息设备和高性能和低功耗。操作和运输的山谷在室温下pseudospins仍具有挑战性的,因为短暂的一生valley-polarized运营商和激子。将2 d TMDCs与纳米光子对象如电浆纳米结构提供了一个有竞争力的解决方案来解决所面临的挑战。为这一领域的研究实践兴趣,也可以呈现丰富的物理学件轻松事交互。使用纳米光子策略最近的进展提高谷极化程度,特别是在室温下,突出显示。开放式问题、主要挑战和有趣未来发展操纵山谷在二维半导体的帮助信息纳米光子结构也将被讨论。

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