论文标题

范德华异质结构中的层间激子:结合能,鲜明的移位和野外诱导的解离

Interlayer excitons in van der Waals heterostructures: Binding energy, Stark shift, and field-induced dissociation

论文作者

Kamban, Høgni C., Pedersen, Thomas G.

论文摘要

已经观察到具有II型带对齐方式的Van der Waals异质结构(VDWH)中的光激发的InterAyer激素,已观察到在Ultrafast TimeScales上的Interlayer激子中隧道。这样的层间激子具有足够长的寿命,可以诱导与外部内部电场分离,成为提高光电流设备效率的有吸引力的选择。在本文中,我们使用基于外部复合体缩放(ECS)的数值程序来计算六种不同过渡金属二甲化合物(TMD)VDWH的六种不同过渡金属二甲化合物(TMD)VDWH的层间激子结合能,鲜明的移位和解离速率。我们利用分析性双层keldys的电势,描述了电子孔对之间的相互作用,并通过比较完整的多层泊松方程来验证其精度。基于此模型,我们获得了激子解离率的分析弱场表达。分析的异质结构是MOS $ _2 $/MOSE $ _2 $,MOS $ _2 $/ws $ _2 $,MOS $ _2 $/WSE $ _2 $,MOSE $ _2 $ _2 $/WSE $ _2 $,WS $ _2 $ _2 $/MOSE $/MOSE $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _ 2对于弱电场,我们发现WS $ _2 $/WSE $ _2 $支持六个结构中最快的解离率。此外,我们观察到VDWH中的激子解离率明显大于其单层对应物。

Photoexcited intralayer excitons in van der Waals heterostructures (vdWHs) with type-II band alignment have been observed to tunnel into interlayer excitons on ultrafast timescales. Such interlayer excitons have sufficiently long lifetimes that inducing dissociation with external in-plane electric fields becomes an attractive option of improving efficiency of photocurrent devices. In the present paper, we calculate interlayer exciton binding energies, Stark shifts, and dissociation rates for six different transition metal dichalcogenide (TMD) vdWHs using a numerical procedure based on exterior complex scaling (ECS). We utilize an analytical bilayer Keldysh potential describing the interaction between the electron-hole pair, and validate its accuracy by comparing to the full multilayer Poisson equation. Based on this model, we obtain an analytical weak-field expression for the exciton dissociation rate. The heterostructures analysed are MoS$_2$/MoSe$_2$, MoS$_2$/WS$_2$, MoS$_2$/WSe$_2$, MoSe$_2$/WSe$_2$, WS$_2$/MoSe$_2$, and WS$_2$/WSe$_2$ in various dielectric environments. For weak electric fields, we find that WS$_2$/WSe$_2$ supports the fastest dissociation rates among the six structures. We, furthermore, observe that exciton dissociation rates in vdWHs are significantly larger than in their monolayer counterparts.

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