Lattice thermal conductivity reduction and phonon localizationlike behavior in superlattice structures

被引:450
作者
Venkatasubramanian, R [1 ]
机构
[1] Res Triangle Inst, Res Triangle Pk, NC 27709 USA
关键词
D O I
10.1103/PhysRevB.61.3091
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A study of thermal conductivities perpendicular to the interfaces in Bi2Te3/Sb2Te3 superlattices is presented. The lattice thermal conductivities in these short-period superlattices are less than those in homogeneous solid-solution alloys and exhibit a minimum for a period of similar to 50 Angstrom. For periods less than 50 Angstrom, the adjoining layers of the superlattice apparently become coupled and, in effect, make their thermal conductivities approach that of an alloy. Using the mean free path from kinetic theory, a diffusive transport analysis suggests a low-frequency cutoff (omega(cutoff))in the spectrum of heat-conducting phonons. A physical model based on the coherent backscattering of phonon waves at the superlattice interfaces is outlined for the reduction of lattice thermal conductivity; this suggests conditions of localizationlike behavior for the low-frequency phonons. The omega(cutoff) from the diffusive transport model is comparable to that estimated from applying the Anderson criterion to the potential localization of phonon waves. The general behavior of localizationlike effects is not unique to Bi2Te3/Sb2Te3 superlattices; it is also apparent in the thermal conductivities of Si/Ge superlattices. These superlattice structures offer a scope for studying the phonon localization phenomena while the lattice thermal conductivity reduction could lead to high-performance thermoelectric materials.
引用
收藏
页码:3091 / 3097
页数:7
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