异质结
声子
材料科学
散射
声子散射
皮秒
热化
凝聚态物理
超快电子衍射
化学物理
衍射
电子衍射
物理
光学
原子物理学
激光器
作者
Amalya C. Johnson,Johnathan D. Georgaras,Xiaozhe Shen,Helen Yao,Ashley P. Saunders,Helen J. Zeng,Hyung‐Jin Kim,Aditya Sood,Tony F. Heinz,Aaron M. Lindenberg,Duan Luo,Felipe H. da Jornada,Fang Liu
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2024-01-24
卷期号:10 (4)
被引量:3
标识
DOI:10.1126/sciadv.adj8819
摘要
Vertically stacked van der Waals (vdW) heterostructures exhibit unique electronic, optical, and thermal properties that can be manipulated by twist-angle engineering. However, the weak phononic coupling at a bilayer interface imposes a fundamental thermal bottleneck for future two-dimensional devices. Using ultrafast electron diffraction, we directly investigated photoinduced nonequilibrium phonon dynamics in MoS 2 /WS 2 at 4° twist angle and WSe 2 /MoSe 2 heterobilayers with twist angles of 7°, 16°, and 25°. We identified an interlayer heat transfer channel with a characteristic timescale of ~20 picoseconds, about one order of magnitude faster than molecular dynamics simulations assuming initial intralayer thermalization. Atomistic calculations involving phonon-phonon scattering suggest that this process originates from the nonthermal phonon population following the initial interlayer charge transfer and scattering. Our findings present an avenue for thermal management in vdW heterostructures by tailoring nonequilibrium phonon populations.
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