论文标题

不一致的声子运输在跨范德华超级晶格中主导热传导

Incoherent phonon transport dominates heat conduction across van der Waals superlattices

论文作者

Zhao, Lu, Zhang, Lijuan, Song, Houfu, Du, Hongda, Wang, Renshaw X., Wu, Junqiao, Kang, Feiyu, Sun, Bo

论文摘要

在不同类型的界面中,超晶格中的热传导机制可能不同。范德华(Van der Waals)超级晶格是通过设计通过弱的范德华(Van der Waals)进行物理组装的结构,并且可以在晶格匹配和处理兼容性的传统范围之外托管属性,并提供新类型的接口。在这项工作中,合成了天然范德华(SNS)1.17(nbs2)n超晶格,并通过时间域的热心率与界面密度的函数来测量其导电电导率。我们的结果表明,当声子的相干长度大于超晶格周期时,(SNS)1.17(NBS2)N超级晶格的热传导由界面散射主导,表明即使在周期且较薄的情况下,范德尔瓦尔的跨平面热传导不连贯,则可以占主导地位。此外,我们的结果表明,在大多数范德华超级晶格中,当周期短时占主导地位的常规超级晶格的热传导机制不适用。我们的发现为了解范德华超级晶格的热行为提供了新的见解,并根据不同类型的接口类型设计了有效的超晶格的热管理方法。

Heat conduction mechanisms in superlattices could be different across different types of interfaces. Van der Waals superlattices are structures physically assembled through weak van der Waals interactions by design, and may host properties beyond the traditional limits of lattice matching and processing compatibility, offering new types of interfaces. In this work, natural van der Waals (SnS)1.17(NbS2)n superlattices are synthesized, and their thermal conductivities are measured by time-domain thermoreflectance as a function of interface density. Our results show that heat conduction of (SnS)1.17(NbS2)n superlattices is dominated by interface scattering when the coherent length of phonons is larger than the superlattice period, indicating incoherent phonon transport dominates cross-plane heat conduction in van der Waals superlattices even when the period is atomically thin and abrupt. Moreover, our result suggests that the widely accepted heat conduction mechanism for conventional superlattices that coherent phonons dominate when the period is short, is not applicable due to symmetry breaking in most van der Waals superlattices. Our findings provide new insight for understanding the thermal behavior of van der Waals superlattices, and devise approaches for effective thermal management of superlattices depending on the distinct types of interfaces.

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