论文标题

摩西$ _2 $/wse $ _2 $异质分子的高度线性两极化的层中层中的激子发射的出现

Emergence of highly linearly polarized interlayer exciton emission in MoSe$_2$/WSe$_2$ heterobilayers with transfer-induced layer corrugation

论文作者

Alexeev, Evgeny M., Mullin, Nic, Ares, Pablo, Nevison-Andrews, Harriet, Skrypka, Oleksandr V., Godde, Tillmann, Kozikov, Aleksey, Hague, Lee, Wang, Yibo, Novoselov, Kostya S., Fumagalli, Laura, Hobbs, Jamie K., Tartakovskii, Alexander I.

论文摘要

基于原子薄晶体的确定性转移的可访问制造方法的可用性对于快速扩展到范德华异质结构的研究至关重要。这些技术的固有问题是传输过程中聚合物载体膜的变形,这可能导致转移的二维材料中诱导的高度不均匀菌株。 Here, using a combination of optical spectroscopy, atomic force and Kelvin probe force microscopy, we show that the presence of nanometer scale wrinkles formed due to transfer-induced stress relaxation can lead to strong changes in the optical properties of MoSe$_2$/WSe$_2$ heterostructures and the emergence of the linearly polarized interlayer exciton photoluminescence.我们将这些变化归因于纳米链接中晶体对称性的局部断裂,由于应变诱导的层间层带隙还原,它们是层间激子的有效累积中心。使用开尔文探针力显微镜获得的波纹杂质样品的表面电势图像揭示了与应变诱导的带隙调制一致的局部工作函数的变化,而在皱纹的脊脊中观察到的电势偏移显示与从皱纹几何概述的张力估算的张力相关性的明显相关性。我们的发现突出了残留应变在定义范德华异质结构的光学特性中的重要作用,并提出了局部应变工程中层间激子操纵的新方法。

The availability of accessible fabrication methods based on deterministic transfer of atomically thin crystals has been essential for the rapid expansion of research into van der Waals heterostructures. An inherent issue of these techniques is the deformation of the polymer carrier film during the transfer, which can lead to highly non-uniform strain induced in the transferred two-dimensional material. Here, using a combination of optical spectroscopy, atomic force and Kelvin probe force microscopy, we show that the presence of nanometer scale wrinkles formed due to transfer-induced stress relaxation can lead to strong changes in the optical properties of MoSe$_2$/WSe$_2$ heterostructures and the emergence of the linearly polarized interlayer exciton photoluminescence. We attribute these changes to the local breaking of crystal symmetry in the nanowrinkles, which act as efficient accumulation centers for the interlayer excitons due to the strain-induced interlayer band gap reduction. The surface potential images of the rippled heterobilayer samples acquired using Kelvin probe force microscopy reveal the variation of the local work function consistent with the strain-induced band gap modulation, while the potential offset observed at the ridges of the wrinkles shows a clear correlation with the value of the tensile strain estimated from the wrinkle geometry. Our findings highlight the important role of the residual strain in defining optical properties of van der Waals heterostructures and suggest novel approaches for interlayer exciton manipulation by local strain engineering.

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