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Enhanced excitonic features in an anisotropic ReS2/WSe2 heterostructure

机译:在一个各向异性增强激子的特性它/ WSe2异质结构

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Two-dimensional (2D) semiconductors have opened new horizons for future optoelectronic applications through efficient light-matter and many-body interactions at quantum level. Anisotropic 2D materials like rhenium disulphide (ReS2) present a new class of materials with polarized excitonic resonances. Here, we demonstrate a WSe2/ReS2 heterostructure which exhibits a significant photoluminescence quenching at room temperature as well as at low temperatures. This indicates an efficient charge transfer due to the electron-hole exchange interaction. The band alignment of two materials suggests that electrons optically injected into WSe2 are transferred to ReS2. Polarization resolved luminescence measurements reveal two additional polarization-sensitive exciton peaks in ReS2 in addition to the two conventional exciton resonances X-1 and X-2. Furthermore, for ReS2 we observe two charged excitons (trions) with binding energies of 18 meV and 15 meV, respectively. The bi-excitons of WSe2 become polarization sensitive and inherit polarizing properties from the underlying ReS2 layers, which act as patterned substrates for top layer. Overall, our findings provide a better understanding of optical signatures in 2D anisotropic materials.
机译:二维(2 d)半导体已经打开了为未来光电子新视野应用程序通过有效件轻松事在量子层面多体的相互作用。各向异性2 d铼二硫化物等材料(它)的一个新类材料极化激子的共振。演示WSe2 /它的异质结构展示一个重要的光致发光在室温下淬火以及在低温度。由于电子空穴传输交换交互。表明电子光注入WSe2转移到它。解决发光测量揭示两种额外polarization-sensitive激子峰在它除了两个传统激子共振x - 1, x - 2。它我们观察两个带电激子(揣恩)18兆电子伏的结合能和15兆电子伏,分别。极化敏感和继承偏振从底层它层属性作为顶级的基质层。总的来说,我们的研究结果提供了一个更好的在2 d光学签名的理解各向异性材料。

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