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化学气相沉积生长的层状二硫化钼中的达维多夫分裂、共振效应和声子动力学

Davydov Splitting, Resonance Effect and Phonon Dynamics in Chemical Vapor Deposition Grown Layered MoS.

作者信息

Kumar Deepu, Singh Birender, Kumar Rahul, Kumar Mahesh, Kumar Pradeep

机构信息

School of Basic Sciences, Indian Institute of Technology Mandi, 175005, India.

Department of Electrical Engineering, Indian Institute of Technology Jodhpur, 342037, India.

出版信息

Nanotechnology. 2021 Apr 26;32(28). doi: 10.1088/1361-6528/abf37b.

Abstract

We present comprehensive temperature dependent Raman measurements for chemical vapor deposition grown horizontally aligned layered MoSin a temperature range of 4-330 K under a resonance condition. Our analysis of temperature dependent phonon frequency shift and linewidth suggests a finite role of three and four phonon anharmonic effect. We observe Davydov splitting of the out-of-plane () and in-plane (E2g1) modes for both three layer (3L) and few layer (FL) systems. The number of Davydov splitting components are found more in FL compared to 3L MoS, which suggests that it increases with an increasing number of layers. Further, Davydov splitting is analyzed as a function of temperature. Temperature evaluation of the Raman spectra shows that the Davydov splitting, especially formode, is very strong and well resolved at low temperature. We observe thatmode shows the splitting at low temperature, whileE2g1mode is split even at room temperature, which suggests a prominent role ofmode in the interlayer interaction at low temperature. Further, an almost 60-fold increase in the intensity of the phonon modes at low temperature clearly shows the temperature dependent tuning of the resonance effect.

摘要

我们展示了在共振条件下,对化学气相沉积生长的水平排列层状MoS进行的4 - 330 K温度范围内的综合温度相关拉曼测量。我们对温度相关声子频率偏移和线宽的分析表明,三声子和四声子非谐效应起到了一定作用。我们观察到三层(3L)和少层(FL)系统的面外()和面内(E2g1)模式都存在达维多夫分裂。与3L MoS相比,FL中发现的达维多夫分裂分量更多,这表明它随着层数的增加而增加。此外,对达维多夫分裂作为温度的函数进行了分析。拉曼光谱的温度评估表明,达维多夫分裂,特别是对于模式,在低温下非常强且分辨良好。我们观察到模式在低温下出现分裂,而E2g1模式即使在室温下也会分裂,这表明模式在低温下的层间相互作用中起着重要作用。此外,低温下声子模式强度几乎增加了60倍,清楚地显示了共振效应的温度相关调谐。

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