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局域界面声子模式的实验观测

Experimental observation of localized interfacial phonon modes.

作者信息

Cheng Zhe, Li Ruiyang, Yan Xingxu, Jernigan Glenn, Shi Jingjing, Liao Michael E, Hines Nicholas J, Gadre Chaitanya A, Idrobo Juan Carlos, Lee Eungkyu, Hobart Karl D, Goorsky Mark S, Pan Xiaoqing, Luo Tengfei, Graham Samuel

机构信息

George W. Woodruff School of Mechanical Engineering, Georgia Institute of Technology, Atlanta, GA, 30332, USA.

Department of Materials Science and Engineering, University of Illinois at Urbana-Champaign, Urbana, IL, 61801, USA.

出版信息

Nat Commun. 2021 Nov 25;12(1):6901. doi: 10.1038/s41467-021-27250-3.

Abstract

Interfaces impede heat flow in micro/nanostructured systems. Conventional theories for interfacial thermal transport were derived based on bulk phonon properties of the materials making up the interface without explicitly considering the atomistic interfacial details, which are found critical to correctly describing thermal boundary conductance. Recent theoretical studies predicted the existence of localized phonon modes at the interface which can play an important role in understanding interfacial thermal transport. However, experimental validation is still lacking. Through a combination of Raman spectroscopy and high-energy-resolution electron energy-loss spectroscopy in a scanning transmission electron microscope, we report the experimental observation of localized interfacial phonon modes at ~12 THz at a high-quality epitaxial Si-Ge interface. These modes are further confirmed using molecular dynamics simulations with a high-fidelity neural network interatomic potential, which also yield thermal boundary conductance agreeing well with that measured in time-domain thermoreflectance experiments. Simulations find that the interfacial phonon modes have an obvious contribution to the total thermal boundary conductance. Our findings significantly contribute to the understanding of interfacial thermal transport physics and have impact on engineering thermal boundary conductance at interfaces in applications such as electronics thermal management and thermoelectric energy conversion.

摘要

界面会阻碍微纳结构系统中的热流。传统的界面热输运理论是基于构成界面的材料的体声子性质推导出来的,没有明确考虑原子尺度的界面细节,而这些细节对于正确描述热边界电导至关重要。最近的理论研究预测,界面处存在局域声子模式,这对理解界面热输运可能起到重要作用。然而,目前仍缺乏实验验证。通过结合拉曼光谱和扫描透射电子显微镜中的高能分辨率电子能量损失谱,我们报告了在高质量外延Si-Ge界面处实验观测到频率约为12太赫兹的局域界面声子模式。利用具有高保真神经网络原子间势的分子动力学模拟进一步证实了这些模式,模拟得到的热边界电导也与时域热反射实验测量结果吻合良好。模拟发现,界面声子模式对总的热边界电导有显著贡献。我们的研究结果对理解界面热输运物理有重要贡献,并对电子热管理和热电能量转换等应用中界面热边界电导的工程调控有重要影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b77/8617064/dc06969b4edf/41467_2021_27250_Fig1_HTML.jpg

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