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首页> 外文期刊>Nano letters >Giant Valley-Zeeman Splitting from Spin-Singlet and Spin-Triplet Interlayer Excitons in WSe2/MoSe2 Heterostructure
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Giant Valley-Zeeman Splitting from Spin-Singlet and Spin-Triplet Interlayer Excitons in WSe2/MoSe2 Heterostructure

机译:巨大的谷Zeeman分裂从旋转态突发和旋转三重态层间激子在WSE2 / MOSE2异质结构中

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摘要

Transition metal dichalcogenides (TMDCs) heterostructure with a type II alignment hosts unique interlayer excitons with the possibility of spin-triplet and spin-singlet states. However, the associated spectroscopy signatures remain elusive, strongly hindering the understanding of the Moire potential modulation of the interlayer exciton. In this work, we unambiguously identify the spin-singlet and spin-triplet interlayer excitons in the WSe2/MoSe2 heterobilayer with a 60 degrees twist angle through the gate- and magnetic field-dependent photoluminescence spectroscopy. Both the singlet and triplet interlayer excitons show giant valley-Zeeman splitting between the K and K' valleys, a result of the large Lande g-factor of the singlet interlayer exciton and triplet interlayer exciton, which are experimentally determined to be similar to 10.7 and similar to 15.2 respectively, which is in good agreement with theoretical expectation. The photoluminescence (PL) from the singlet and triplet interlayer excitons show opposite helicities, determined by the atomic registry. Helicity-resolved photoluminescence excitation (PLE) spectroscopy study shows that both singlet and triplet interlayer excitons are highly valley-polarized at the resonant excitation with the valley polarization of the singlet interlayer exciton approaching unity at similar to 20 K. The highly valley-polarized singlet and triplet interlayer excitons with giant valley-Zeeman splitting inspire future applications in spintronics and valleytronics.
机译:过渡金属二硫代甲基化物(TMDC)异质结构与II型取向宿主,具有旋转三重态和旋转单态的可能性独特的层间激子。然而,相关的光谱学签名仍然难以实现,强烈地阻碍了对层间激子的莫尔潜在调制的理解。在这项工作中,我们明确地识别WSE2 / MOSE2异质层中的旋转态序列和旋转三重态层间杂交体,通过栅极和磁场依赖性光致发光光谱分面具有60度扭曲角度。单身和三联体中间激子术均显示巨大的山谷 - 塞曼分裂k和k'valleys之间,该结果是单向中间型激子和三重态层间激子的大地域G型,这是通过实验确定的与10.7类似的类似于15.2分别与理论期望良好。来自单态的光致发光(PL)和三重态层间激子显示出相反的螺旋,由原子登记处确定。螺旋升分辨的光致发光激发(PLE)光谱研究表明,单态和三态层间激素在谐振激发中具有高度谷极化,其偏振激发与偏振的偏振偏振在类似于20K的统一偏振中。高度谷极化单线与巨大的谷塞曼分裂的三联层间激素激发了闪光灯和谷谷的未来应用。

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