论文标题

形态学引起的自组装WS2金字塔的光谱修饰

Morphology-induced spectral modification of self-assembled WS2 pyramids

论文作者

Komen, Irina, van Heijst, Sabrya E., Conesa-Boj, Sonia, Kuipers, L.

论文摘要

由于它们有趣的光学特性(包括稳定和手性激子),二维过渡金属二核苷(2D-TMDS)持有纳米光子剂中应用的承诺。化学蒸气沉积(CVD)技术提供了一个平台,用于制造和设计具有多种几何形状的纳米结构。但是,种植纳米地几何测定法的异国情调越多,对其光学响应的​​了解越少。 WS2纳米结构具有从单层到空心金字塔的几何形状。相对于水平分层的二硫化硫化物,空心金字塔表现出强烈降低的光致发光,从而更详细地促进了对其透明拉曼信号的研究。令人兴奋的是,空心金字塔表现出大量的高阶语音共振。与单层相反,金字塔的光学响应的​​光谱特征取决于位置。峰强度,峰值比和光谱峰位置的差异揭示了空心金字塔火山口和侧面原子布置的局部变化。空心WS2金字塔的位置依赖性光响应是表征的,并归因于生长诱导的纳米地层。因此,第一步是为了生产可调纳米光的设备,其应用从光电子学到非线性光学元件的应用。

Due to their intriguing optical properties, including stable and chiral excitons, two-dimensional transition metal dichalcogenides (2D-TMDs) hold the promise of applications in nanophotonics. Chemical vapor deposition (CVD) techniques offer a platform to fabricate and design nanostructures with diverse geometries. However, the more exotic the grown nanogeometry, the less is known about its optical response. WS2 nanostructures with geometries ranging from monolayers to hollow pyramids have been created. The hollow pyramids exhibit a strongly reduced photoluminescence with respect to horizontally layered tungsten disulphide, facilitating the study of their clear Raman signal in more detail. Excited resonantly, the hollow pyramids exhibit a great number of higher-order phononic resonances. In contrast to monolayers, the spectral features of the optical response of the pyramids are position dependent. Differences in peak intensity, peak ratio and spectral peak positions reveal local variations in the atomic arrangement of the hollow pyramids crater and sides. The position-dependent optical response of hollow WS2 pyramids is characterized and attributed to growth-induced nanogeometry. Thereby the first steps are taken towards producing tunable nanophotonic devices with applications ranging from opto-electronics to non-linear optics.

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