TY - GEN
T1 - Molecular dynamics simulation on the out-of plane thermal conductivity of monocrystal germanium thin-film
AU - Zhang, Xingli
AU - Sun, Zhaowei
AU - Wu, Guoqiang
PY - 2009
Y1 - 2009
N2 - We establish a heat conduction model to investigate the thermal conductivities of monocrystal germanium thin-film based on the anisotropic non-equilibrium molecular dynamics (NEMD) arithmetic and corresponding Tersoff potential energy function. The simulation results indicate that the thermal conductivity of monocrystal germanium thin-film is remarkably lower than corresponding bulk experimental data and increase with increasing the film thickness. Furthermore, the thermal conductivity of that relates to film thickness linearly in the simulative range. For a given film thickness, it vary much small with increasing the temperature, and its size effect is significant comparing with the bulk germanium crystal. This work shows that molecular dynamics, applied under the correct conditions, is a viable tool for calculating the thermal conductivity of monocrystal germanium thin-films. More generally, it demonstrates the potential of molecular dynamics for ascertaining microscale thermophysical properties in complex structures.
AB - We establish a heat conduction model to investigate the thermal conductivities of monocrystal germanium thin-film based on the anisotropic non-equilibrium molecular dynamics (NEMD) arithmetic and corresponding Tersoff potential energy function. The simulation results indicate that the thermal conductivity of monocrystal germanium thin-film is remarkably lower than corresponding bulk experimental data and increase with increasing the film thickness. Furthermore, the thermal conductivity of that relates to film thickness linearly in the simulative range. For a given film thickness, it vary much small with increasing the temperature, and its size effect is significant comparing with the bulk germanium crystal. This work shows that molecular dynamics, applied under the correct conditions, is a viable tool for calculating the thermal conductivity of monocrystal germanium thin-films. More generally, it demonstrates the potential of molecular dynamics for ascertaining microscale thermophysical properties in complex structures.
KW - Molecular dynamics
KW - Monocrystal germanium thin-film
KW - Size effect
KW - Thermal conductivity
UR - https://www.scopus.com/pages/publications/70349666764
U2 - 10.1109/NEMS.2009.5068517
DO - 10.1109/NEMS.2009.5068517
M3 - 会议稿件
AN - SCOPUS:70349666764
SN - 9781424446308
T3 - 4th IEEE International Conference on Nano/Micro Engineered and Molecular Systems, NEMS 2009
SP - 17
EP - 20
BT - 4th IEEE International Conference on Nano/Micro Engineered and Molecular Systems, NEMS 2009
T2 - 4th IEEE International Conference on Nano/Micro Engineered and Molecular Systems, NEMS 2009
Y2 - 5 January 2009 through 8 January 2009
ER -