论文标题

部分可观测时空混沌系统的无模型预测

Impact of substrates and quantum effects on exciton line shapes of 2D semiconductors at room temperature

论文作者

van de Groep, Jorik, Li, Qitong, Song, Jung-Hwan, Kik, Pieter G., Brongersma, Mark L.

论文摘要

单层过渡金属二盐(TMDS)的激子共振在室温下提供了异常强的轻质物质相互作用。它们的光谱线形状在设计无数的光电设备的设计中至关重要,从太阳能电池到量子信息处理。然而,静态不均匀性和动态波动引起的疾病会显着影响线形状。许多最近的作品通过实验评估了放置在基板上的TMD单层的光学特性,并且线形通常与材料的质量直接链接。在这里,我们强调说,底物和TMD反射的干扰可以强烈影响线形状。我们进一步展示了基本的,室温的反射测量如何通过系统地控制用索引匹配的油系统控制底物反射来研究量子机械激子动力学。通过使用正确选择的油去除基材的贡献,我们可以提取激发型衰减率,包括量子机械脱位率。结果为分层纳米光系统中激子线形状的工程提供了宝贵的指导。

Exciton resonances in monolayer transition-metal dichalcogenides (TMDs) provide exceptionally strong light-matter interaction at room temperature. Their spectral line shape is critical in the design of a myriad of optoelectronic devices, ranging from solar cells to quantum information processing. However, disorder resulting from static inhomogeneities and dynamical fluctuations can significantly impact the line shape. Many recent works experimentally evaluate the optical properties of TMD monolayers placed on a substrate and the line shape is typically linked directly to the material's quality. Here, we highlight that the interference of the substrate and TMD reflections can strongly influence the line shape. We further show how basic, room-temperature reflection measurement allow investigation of the quantum mechanical exciton dynamics by systematically controlling the substrate reflection with index-matching oils. By removing the substrate contribution with a properly chosen oil, we can extract the excitonic decay rates including the quantum mechanical dephasing rate. The results provide valuable guidance for the engineering of exciton line shapes in layered nanophotonic systems.

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