声子
热导率
凝聚态物理
材料科学
超晶格
范德瓦尔斯力
热电效应
分子束外延
外延
相干长度
薄膜
半导体
Crystal(编程语言)
热电材料
石墨烯
连贯性(哲学赌博策略)
热的
作者
Daniel Brito,James Caleb Peters,Francis Leonard Deepak,Sascha Sadewasser,F. Rivadulla,Marcel S. Claro
摘要
The increase in thermal conductivity, κ, at small period lengths in covalently bonded semiconductor and oxide epitaxial superlattices (SLs) is a hallmark of coherent phonon transport and a route for improving heat dissipation in the thin limit. Here, we show that, on the contrary, the phonon coherence length remains shorter than the minimum SL period in van der Waals (vdW) SLs. We measured the cross-plane κz of epitaxial Bi2Se3/β-In2Se3 vdW SLs grown by molecular beam epitaxy; our results show that κ decreases monotonically with increasing interface density down to the two-layer period limit. This suggests that the weak interface vdW bonding of these SLs results in diffusive phonon transport over the whole period range. We discuss further reduction to single-layer SLs and its effects on crystal and interface quality. The results presented in this paper highlight a constraint for thermal management in vdW-based nanoelectronic and thermoelectric devices.
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