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Interplay between many body effects and Coulomb screening in the optical bandgap of atomically thin MoS2

机译:多体效应和库仑相互作用自动筛选的光学带隙薄二硫化钼

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摘要

Due to its unique layer-number dependent electronic band structure and strong excitonic features, atomically thin MoS2 is an ideal 2D system where intriguing photoexcited-carrier-induced phenomena can be detected in excitonic luminescence. We perform micro-photoluminescence (PL) measurements and observe that the PL peak redshifts nonlinearly in mono-and bi-layer MoS2 as the excitation power is increased. The excited carrier-induced optical bandgap shrinkage is found to be proportional to n(4/3), where n is the optically-induced free carrier density. The large exponent value of 4/3 is explicitly distinguished from a typical value of 1/3 in various semiconductor quantum well systems. The peculiar n(4/3) dependent optical bandgap redshift may be due to the interplay between bandgap renormalization and reduced exciton binding energy.
机译:由于其独特的层数有关电子能带结构和强烈的激子的功能,自动瘦二硫化钼是一个理想的2 d系统,有趣的photoexcited-carrier-induced现象可以中发现激子的发光。micro-photoluminescence (PL)测量观察到PL峰红移非线性mono和双向层二硫化钼作为励磁电源增加了。隙收缩是成正比n(4/3),其中n是optically-induced免费的载体密度。明确区分开来是一个典型的价值各种半导体量子阱的1/3系统。能带红移可能是由于相互作用能带重正化和减少之间的关系激子结合能。

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