Valleytronics公司
光电流
自旋电子学
单层
光电子学
光致发光
材料科学
半导体
圆极化
螺旋度
纳米技术
凝聚态物理
物理
光学
铁磁性
微带线
粒子物理学
作者
Mustafa Eginligil,Bingchen Cao,Zilong Wang,Xiaonan Shen,Chunxiao Cong,Jingzhi Shang,Cesare Soci,Ting Yu
摘要
The aim of valleytronics is to exploit confinement of charge carriers in local valleys of the energy bands of semiconductors as an additional degree of freedom in optoelectronic devices. Thanks to strong direct excitonic transitions in spin-coupled K valleys, monolayer molybdenum disulphide is a rapidly emerging valleytronic material, with high valley polarization in photoluminescence. Here we elucidate the excitonic physics of this material by light helicity-dependent photocurrent studies of phototransistors. We demonstrate that large photocurrent dichroism (up to 60%) can also be achieved in high-quality molybdenum disulphide monolayers grown by chemical vapour deposition, due to the circular photogalvanic effect on resonant excitations. This opens up new opportunities for valleytonic applications in which selective control of spin-valley-coupled photocurrents can be used to implement polarization-sensitive light-detection schemes or integrated spintronic devices, as well as biochemical sensors operating at visible frequencies.
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