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范德华异质结构中局域层间激子之间的偶极相互作用。

Dipolar interactions between localized interlayer excitons in van der Waals heterostructures.

作者信息

Li Weijie, Lu Xin, Dubey Sudipta, Devenica Luka, Srivastava Ajit

机构信息

Department of Physics, Emory University, Atlanta, GA, USA.

出版信息

Nat Mater. 2020 Jun;19(6):624-629. doi: 10.1038/s41563-020-0661-4. Epub 2020 Apr 13.

Abstract

Although photons in free space barely interact, matter can mediate interactions between them resulting in optical nonlinearities. Such interactions at the single-quantum level result in an on-site photon repulsion, crucial for photon-based quantum information processing and for realizing strongly interacting many-body states of light. Here, we report repulsive dipole-dipole interactions between electric field-tuneable, localized interlayer excitons in the MoSe/WSe heterobilayer. The presence of a single, localized exciton with an out-of-plane, non-oscillating dipole moment increases the energy of the second excitation by ~2 meV-an order of magnitude larger than the emission linewidth and corresponding to an inter-dipole distance of ~7 nm. At higher excitation power, multi-exciton complexes appear at systematically higher energies. The magnetic field dependence of the emission polarization is consistent with the spin-valley singlet nature of the dipolar molecular state. Our finding represents a step towards the creation of excitonic few- and many-body states such as dipolar crystals with spin-valley spinor in van der Waals heterostructures.

摘要

尽管自由空间中的光子几乎不相互作用,但物质可以介导它们之间的相互作用,从而产生光学非线性。这种单量子水平的相互作用会导致局域光子排斥,这对于基于光子的量子信息处理以及实现光的强相互作用多体状态至关重要。在此,我们报道了MoSe/WSe异质双层中电场可调的局域层间激子之间的排斥偶极-偶极相互作用。具有面外非振荡偶极矩的单个局域激子的存在使二次激发的能量增加了约2 meV,比发射线宽大一个数量级,对应于约7 nm的偶极间距离。在更高的激发功率下,多激子复合物出现在系统地更高的能量处。发射极化的磁场依赖性与偶极分子态的自旋-谷单重态性质一致。我们的发现代表了朝着在范德华异质结构中创建激子少体和多体状态(如具有自旋-谷旋量的偶极晶体)迈出的一步。

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