论文标题
通过电介质和底物工程调制单层WS2中TRION和激子形成的调制
Modulation of trion and exciton formation in monolayer WS2 by dielectric and substrate engineering
论文作者
论文摘要
过渡金属二甲藻(TMD)单层的光致发光(PL)受介电环境的强烈影响。底物中存在的缺陷状态可在TMD单层中诱导无法控制的掺杂,从而改变PL光谱。在调节PL光谱中不可避免的减去缺陷的效果方面,已经做出了巨大的努力,但是仍然缺乏适当的理解和方便的方式。在这里,我们通过逐渐增加WS2单层和底物之间的分离来系统地研究表面缺陷的影响。因此,我们可以精确调节WS2的PL光谱中的激子和TRION贡献。对介电工程和图案的底物的激发功率依赖性测量有助于我们阐明单层WS2中PL调制的机理。我们还研究了底物缺陷对PL光谱携带的电荷性质的影响。这些结果为通过工程底物进行了调节并获得TMD的所需PL光谱的新途径。我们的发现对于制造激子互连,Valleytronic和单光子设备将很有用。
Photoluminescence (PL) of transition metal dichalcogenide (TMD) monolayers is strongly influenced by the dielectric environment. The defect states present in the substrate induces uncontrollable doping in the TMD monolayer and thereby modifies the PL spectra. There have been enormous efforts to tune and overcome the effect of inevitable subtract defects in PL spectra, but a proper understanding and a convenient way are still lacking. Here, we systematically studied the effect of surface defects by gradually increasing the separation between WS2 monolayer and substrate. Hence, we could precisely modulate the exciton and trion contribution in the PL spectra of WS2. The excitation power dependant measurements on dielectric engineered and patterned substrates helped us to shed light on the mechanism of PL modulation in monolayer WS2. We have also studied the influence of the nature of the charge carried by substrate defects on the PL spectra. These results open a new pathway to modulate and obtain the desired PL spectra of TMDs by engineering the substrates. Our findings will be useful for fabricating excitonic interconnects, valleytronic, and single-photon devices.