Crystal structure dependent thermal conductivity in two-dimensional phononic crystal nanostructures

被引:47
|
作者
Nakagawa, Junki [1 ]
Kage, Yuta [1 ]
Hori, Takuma [2 ]
Shiomi, Junichiro [2 ]
Nomura, Masahiro [1 ,3 ]
机构
[1] Univ Tokyo, Inst Ind Sci, Tokyo 1538505, Japan
[2] Univ Tokyo, Dept Mech Engn, Tokyo 1138656, Japan
[3] Univ Tokyo, Inst Nano Quantum Informat Elect, Tokyo 1538505, Japan
关键词
SILICON;
D O I
10.1063/1.4926653
中图分类号
O59 [应用物理学];
学科分类号
摘要
Thermal phonon transport in square- and triangular-lattice Si phononic crystal (PnC) nanostructures with a period of 300 ntn was investigated by measuring the thermal conductivity using micrometerscale time-domain thermoretlectance. The placement of circular nanoholes has a strong influence on thermal conductivity when the periodicity is within the range of the thermal phonon mean free path. A staggered hole structure, i.e., a triangular lattice, has lower thermal conductivity, where the difference in thermal conductivity depends on the porosity of the structure. The largest difference in conductivity of approximately 20% was observed at a porosity of around 30%. This crystal structure dependent thermal conductivity can be understood by considering the local heat flux disorder created by a staggered hole structure. Numerical simulation using the Monte Carlo technique was also employed and also showed the lower thermal conductivity for a triangular lattice structure. Besides gaining a deeper understanding of nanoscale thermal phonon transport, this information would be useful in the design of highly efficient thermoelectric materials created by nanopatteming. (C) 2015 AIP Publishing LLC.
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页数:4
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