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通过多共振啁啾微谐振器在高达室温的条件下增强二维过渡金属硫族化合物异质结构中的层间激子发射

Enhancement of Interlayer Exciton Emission in a TMDC Heterostructure via a Multi-Resonant Chirped Microresonator Upto Room Temperature.

作者信息

Palekar Chirag C, Rosa Barbara, Heermeier Niels, Shih Ching-Wen, Limame Imad, Koulas-Simos Aris, Rahimi-Iman Arash, Reitzenstein Stephan

机构信息

Institut für Festkörperphysik, Technische Universität Berlin, Hardenbergstrasse 36, 10623, Berlin, Germany.

I. Physikalisches Institut and Center for Materials Research, Justus-Liebig-Universität Gießen, 35392, Gießen, Germany.

出版信息

Adv Mater. 2024 Aug;36(35):e2402624. doi: 10.1002/adma.202402624. Epub 2024 Jul 15.

Abstract

We report on multi-resonance chirped distributed Bragg reflector (DBR) microcavities. These systems are employed to investigate the light-mater interaction with both intra- and inter-layer excitons of transition metal dichalcogenide (TMDC) bilayer heterostructures. The chirped DBRs consisting of SiO and SiN layers of gradually varying thickness exhibit a broad stopband with a width exceeding 600 nm. Importantly, the structures provide multiple resonances across a broad spectral range, which can be matched to resonances of the embedded TMDC heterostructures. Studying cavity-coupled emission of both intra- and inter-layer excitons from an integrated WSe/MoSe heterostructure in a chirped microcavity system, an enhanced interlayer exciton emission with a Purcell factor of 6.67 ± 1.02 at 4 K is observed. The cavity-enhanced emission of the interlayer exciton is used to investigate its temperature-dependent luminescence lifetime of 60 ps at room temperature. The cavity system modestly suppresses intralayer exciton emission by intentional detuning, thereby promoting a higher IX population and enhancing cavity-coupled interlayer exciton emission. This approach provides an intriguing platform for future studies of energetically distant and confined excitons in different semiconducting materials, which paves the way for various applications such as microlasers and single-photon sources by enabling precise emission control and utilizing multimode resonance light-matter interaction.

摘要

我们报道了多共振啁啾分布布拉格反射镜(DBR)微腔。这些系统用于研究与过渡金属二硫属化物(TMDC)双层异质结构的层内和层间激子的光-物质相互作用。由厚度逐渐变化的SiO和SiN层组成的啁啾DBR呈现出宽度超过600 nm的宽阻带。重要的是,这些结构在很宽的光谱范围内提供多个共振,可与嵌入的TMDC异质结构的共振相匹配。在啁啾微腔系统中研究集成的WSe/MoSe异质结构中层内和层间激子的腔耦合发射,在4 K时观察到层间激子发射增强,珀塞尔因子为6.67±1.02。利用腔增强的层间激子发射来研究其在室温下60 ps的温度依赖发光寿命。通过有意失谐,腔系统适度抑制层内激子发射,从而促进更高的层间激子数量并增强腔耦合的层间激子发射。这种方法为未来研究不同半导体材料中能量上相距较远且受限的激子提供了一个有趣的平台,通过实现精确的发射控制和利用多模共振光-物质相互作用,为诸如微激光器和单光子源等各种应用铺平了道路。

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