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Single charge control of localized excitons in heterostructures with ferroelectric thin films and two-dimensional transition metal dichalcogenides

机译:铁电薄膜和二维过渡金属硫族化合物异质结构中局域激子的单电荷控制

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摘要

Single charge control of localized excitons (LXs) in two-dimensional transition metal dichalcogenides (TMDCs) is crucial for potential applications in quantum information processing and storage. However, traditional electrostatic doping method by applying metallic gates onto TMDCs may cause inhomogeneous charge distribution, optical quenching, and energy loss. Herein, by locally controlling the ferroelectric polarization of the ferroelectric thin film BiFeO3 (BFO) with a scanning probe, we can deterministically manipulate the doping type of monolayer WSe2 to achieve p-type and n-type doping. This nonvolatile approach can maintain the doping type and hold the localized excitonic charges for a long time without applied voltage. Our work demonstrated that the ferroelectric polarization of BFO can control the charges of LXs effectively. Neutral and charged LXs have been observed in different ferroelectric polarization regions, confirmed by magnetic optical measurement. Highly circular polarization degree with 90 photon emission from these quantum emitters was achieved in high magnetic fields. Controlling the single charge of LXs in a non-volatile way shows a great potential for deterministic photon emission with desired charge states for photonic long-term memory.
机译:次充电控制局部激子(lx)在二维过渡金属对潜在dichalcogenides (TMDCs)是至关重要的在量子信息处理中的应用和存储。掺杂方法通过应用金属门上TMDCs可能导致不均匀分布、光学淬火和能量损失。在此,由当地控制铁电铁电薄膜的极化BiFeO3(拍频振荡器)用扫描探针,我们可以确定性操纵的掺杂类型单层WSe2实现p型和n型兴奋剂。掺杂类型和局部激子的费了很长一段时间没有外加电压。我们的工作证明了铁电极化拍频振荡器可以控制的指控lx有效。在不同铁电被观察到极化区域,证实了磁光学测量。度有90%从这些光子发射量子发射器实现在高磁场字段。非易失性的方式显示了巨大的潜力确定的光子发射与所需的费用州光子长期记忆。

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