声子
石墨烯
凝聚态物理
热导率
长波限
材料科学
横截面
波长
驻波
热的
物理
纳米技术
量子力学
光电子学
复合材料
热力学
结构工程
工程类
作者
Nicola Bonini,Jivtesh Garg,Nicola Marzari
出处
期刊:Nano Letters
[American Chemical Society]
日期:2012-05-16
卷期号:12 (6): 2673-2678
被引量:210
摘要
We use first-principles methods based on density functional perturbation theory to characterize the lifetimes of the acoustic phonon modes and their consequences on the thermal transport properties of graphene. We show that using a standard perturbative approach, the transverse and longitudinal acoustic phonons in free-standing graphene display finite lifetimes in the long-wavelength limit, making them ill-defined as elementary excitations in samples of dimensions larger than ∼1 μm. This behavior is entirely due to the presence of the quadratic dispersions for the out-of-plane phonon (ZA) flexural modes that appear in free-standing low-dimensional systems. Mechanical strain lifts this anomaly, and all phonons remain well-defined at any wavelength. Thermal transport is dominated by ZA modes, and the thermal conductivity is predicted to diverge with system size for any amount of strain. These findings highlight strain and sample size as key parameters in characterizing or engineering heat transport in graphene.
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