Peak Structure in the Interlayer Conductance of Moiré Superlattices

Yizhou Tao, Chao Liu, Mingwen Xiao, Henan Fang
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Abstract

We have investigated the peak structure in the interlayer conductance of moiré superlattices using a tunneling theory developed previously by us. The theoretical results predict that, due to the resonance of two different partial waves, the double-peak structure can appear in the curve of the interlayer conductance versus twist angle. Furthermore, we have studied the influences of the model parameters, i.e. the chemical potential of electrodes, the thickness of moiré superlattice and the strength of interface potential, on the peak structure of the interlayer conductance. In particular, the parameter dependence of the peak structure is concluded via a phase diagram, and the physical meanings of the phase diagram is formulized. Finally, the potential applications of the present work is discussed.
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莫伊里超晶格层间电导的峰值结构
我们利用之前开发的隧道理论研究了摩尔纹超晶格层间电导的峰值结构。理论结果预测,由于两个不同部分波的共振,层间电导随扭转角变化的曲线中会出现双峰结构。此外,我们还研究了模型参数(即电极化学势、摩尔超晶格厚度和界面势强度)对层间电导峰值结构的影响。特别是,通过相图总结了峰值结构的参数依赖性,并阐述了相图的物理含义。最后,讨论了本研究的潜在应用。
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