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平行堆叠的二硫化钼中铁电序的激子特征

Excitonic signatures of ferroelectric order in parallel-stacked MoS.

作者信息

Deb Swarup, Krause Johannes, Faria Junior Paulo E, Kempf Michael Andreas, Schwartz Rico, Watanabe Kenji, Taniguchi Takashi, Fabian Jaroslav, Korn Tobias

机构信息

Institute of Physics, University of Rostock, Albert-Einstein-Str. 23, Rostock, 18059, Germany.

Institute for Theoretical Physics, University of Regensburg, 93040, Regensburg, Germany.

出版信息

Nat Commun. 2024 Aug 31;15(1):7595. doi: 10.1038/s41467-024-52011-3.

Abstract

Interfacial ferroelectricity, prevalent in various parallel-stacked layered materials, allows switching of out-of-plane ferroelectric order by in-plane sliding of adjacent layers. Its resilience against doping potentially enables next-generation storage and logic devices. However, studies have been limited to indirect sensing or visualization of ferroelectricity. For transition metal dichalcogenides, there is little knowledge about the influence of ferroelectric order on their intrinsic valley and excitonic properties. Here, we report direct probing of ferroelectricity in few-layer 3R-MoS using reflectance contrast spectroscopy. Contrary to a simple electrostatic perception, layer-hybridized excitons with out-of-plane electric dipole moment remain decoupled from ferroelectric ordering, while intralayer excitons with in-plane dipole orientation are sensitive to it. Ab initio calculations identify stacking-specific interlayer hybridization leading to this asymmetric response. Exploiting this sensitivity, we demonstrate optical readout and control of multi-state polarization with hysteretic switching in a field-effect device. Time-resolved Kerr ellipticity reveals direct correspondence between spin-valley dynamics and stacking order.

摘要

界面铁电性在各种平行堆叠的层状材料中普遍存在,它允许通过相邻层的面内滑动来切换面外铁电序。其对掺杂的耐受性有可能实现下一代存储和逻辑器件。然而,相关研究一直局限于对铁电性的间接传感或可视化。对于过渡金属二硫属化物,关于铁电序对其本征能谷和激子性质的影响,人们了解甚少。在此,我们报告了使用反射率对比光谱对少层3R-MoS中铁电性的直接探测。与简单的静电感知相反,具有面外电偶极矩的层间杂化激子与铁电有序保持解耦,而具有面内偶极取向的层内激子对其敏感。第一性原理计算确定了导致这种不对称响应的特定堆叠层间杂化。利用这种敏感性,我们展示了在场效应器件中通过滞后切换实现多态极化的光学读出和控制。时间分辨克尔椭圆率揭示了自旋能谷动力学与堆叠顺序之间的直接对应关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08df/11366029/29c895fdd844/41467_2024_52011_Fig1_HTML.jpg

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