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理解单层过渡金属二卤族化合物中圆偏振光致发光的变化。

Understanding Variations in Circularly Polarized Photoluminescence in Monolayer Transition Metal Dichalcogenides.

机构信息

Naval Research Laboratory , Washington, D.C. 20375, United States.

出版信息

ACS Nano. 2017 Aug 22;11(8):7988-7994. doi: 10.1021/acsnano.7b02554. Epub 2017 Aug 9.

Abstract

Monolayer transition metal dichalcogenides are promising materials for valleytronic operations. They exhibit two inequivalent valleys in the Brillouin zone, and the valley populations can be directly controlled and determined using circularly polarized optical excitation and emission. The photoluminescence polarization reflects the ratio of the two valley populations. A wide range of values for the degree of circularly polarized emission, P, has been reported for monolayer WS, although the reasons for the disparity are unclear. Here, we optically populate one valley and measure P to explore the valley population dynamics at room temperature in a large number of monolayer WS samples synthesized via chemical vapor deposition. Under resonant excitation, P ranges from 2 to 32%, and we observe a pronounced inverse relationship between photoluminescence (PL) intensity and P. High-quality samples exhibiting strong PL and long exciton relaxation time exhibit a low degree of valley polarization, and vice versa. This behavior is also demonstrated in monolayer WSe samples and transferred WS, indicating that this correlation may be more generally observed and account for the wide variations reported for P. Time-resolved PL provides insight into the role of radiative and nonradiative contributions to the observed polarization. Short nonradiative lifetimes result in a higher measured polarization by limiting opportunity for depolarizing scattering events.

摘要

单层过渡金属二卤化物是谷电子学操作的有前途的材料。它们在布里渊区中表现出两个不等价的谷,谷的分布可以通过圆偏振光激发和发射直接控制和确定。光致发光的偏振反映了两个谷分布的比例。尽管导致这种差异的原因尚不清楚,但已经报道了单层 WS 具有广泛的圆偏振发射程度 P 的值。在这里,我们用光激发一个谷,并测量 P,以在室温下探索大量通过化学气相沉积合成的单层 WS 样品中的谷分布动力学。在共振激发下,P 的范围从 2%到 32%,我们观察到光致发光 (PL) 强度和 P 之间的显著反相关关系。表现出强 PL 和长激子弛豫时间的高质量样品表现出低的谷极化程度,反之亦然。这种行为也在单层 WSe 样品和转移 WS 中得到了证明,表明这种相关性可能更普遍存在,并解释了 P 报道的广泛变化。时间分辨 PL 提供了对观察到的极化中辐射和非辐射贡献的作用的深入了解。短的非辐射寿命通过限制去极化散射事件的机会导致更高的测量极化。

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