基于离轴抛物面镜的扫描隧道显微镜发光实验装置的设计与实现。

Ricardo Javier Peña Román, Y. Auad, Lucas Grasso, L. Padilha, F. Alvarez, I. Barcelos, M. Kociak, L. Zagonel
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引用次数: 2

摘要

我们提出了一种基于离轴抛物面镜集热器的低温扫描隧道显微镜(STM)光收集/注入策略的设计、实现和说明性结果。该装置允许我们进行STM诱导发光(STM- le)和阴极发光(STM- cl)实验,以及原位光致发光(PL)和拉曼光谱作为补充技术。考虑到Étendue守恒并使用离轴抛物面镜,可以设计出一种光收集和注入系统,该系统可以显示72%的收集效率(考虑样品表面上方的半球),同时保持高光谱分辨率并最大限度地减少信号损失。通过原子分辨图像和标准样品表面的扫描隧道光谱结果测试了STM的性能。通过在金属表面和二维半导体样品上执行STM-LE,观察等离子体和激子发射,证明了我们系统的能力。此外,我们还对半导体单层和量子点进行了原位PL测量,并对石墨和六方氮化硼(h-BN)样品进行了原位拉曼测量。此外,在单层h-BN聚集发光光谱上获得了STM-CL和PL,这些光谱通常与碳缺陷相关的隙内态相关。结果表明,基于离轴抛物面镜的灵活高效的光注入和收集装置是一种强有力的工具,可以利用多种光谱技术研究几种类型的纳米结构,并与它们的原子尺度形态和电子结构相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and implementation of a device based on an off-axis parabolic mirror to perform luminescence experiments in a scanning tunneling microscope.
We present the design, implementation, and illustrative results of a light collection/injection strategy based on an off-axis parabolic mirror collector for a low-temperature Scanning Tunneling Microscope (STM). This device allows us to perform STM induced Light Emission (STM-LE) and Cathodoluminescence (STM-CL) experiments and in situ Photoluminescence (PL) and Raman spectroscopy as complementary techniques. Considering the Étendue conservation and using an off-axis parabolic mirror, it is possible to design a light collection and injection system that displays 72% of collection efficiency (considering the hemisphere above the sample surface) while maintaining high spectral resolution and minimizing signal loss. The performance of the STM is tested by atomically resolved images and scanning tunneling spectroscopy results on standard sample surfaces. The capabilities of our system are demonstrated by performing STM-LE on metallic surfaces and two-dimensional semiconducting samples, observing both plasmonic and excitonic emissions. In addition, we carried out in situ PL measurements on semiconducting monolayers and quantum dots and in situ Raman on graphite and hexagonal boron nitride (h-BN) samples. Additionally, STM-CL and PL were obtained on monolayer h-BN gathering luminescence spectra that are typically associated with intragap states related to carbon defects. The results show that the flexible and efficient light injection and collection device based on an off-axis parabolic mirror is a powerful tool to study several types of nanostructures with multiple spectroscopic techniques in correlation with their morphology at the atomic scale and electronic structure.
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