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为研究Sr2FeMoO6的热扩散系数及其温度效应,利用瞬态热栅法研究了不同温度下Sr2FeMoO6热扩散系数变化,发现在温度300~360 K范围内,Sr2FeMoO6热扩散系数随着温度升高缓慢减小;在居里温度Tc~380 K附近,热扩散系数剧烈下降;在温度400~450 K范围内,热扩散系数随着温度升高基本保持不变....  相似文献   
2.
利用有限元法分析计算了脉冲激光激发瞬态热栅在金刚石薄膜/ZnSe衬底双层结构中的三维温度场分布及变化。通过比较不同厚度金刚石薄膜样品的温度场分布,结果显示金刚石薄膜的厚度对样品中温度场的分布有较大影响,随着薄膜厚度的增大,峰值温度提高并且二次加热现象更加明显。  相似文献   
3.
Resistivity, thermal diffusivity, lattice and magnetic properties of double perovskite Sr2-xLaxMnMoO6 are investigated with systematic change of La doping concentration x from 0.0 to 0.4. The insulator to metal phase transition is observed with increasing x above 0.3, suggesting that the extra electrons via substitution of La^3 for Sr^2 ions occupy mainly the conduction Mo-4d band. According to the insulator to metal phase transition, the thermal diffusivity of Sr2-xLaxMnMoO6 enhances from 0.33cm^2/s at x=0.0 to 0.49cm^2/s at x=0.4. We further investigate the La doping effects on the lattice and magnetic properties.  相似文献   
4.
Thermal diffusivity has been investigated in a manganite thin film La0.6Sr0.4MnO3 by means of transient grating (TG) technique at room temperature. A new method, which is generalized to two-layered samples of the thin film deposited on a semi-infinite substrate, is established to fit the TG signals. The thermal diffusivity of the Lao.6Sro.4MnO3 thin film with a thickness of 200nm on an MgO (100) substrate is determined to be 0.92mm^2/s, which is slightly smaller than that of the single crystal sample (1 mm^2/s).  相似文献   
5.
程营  黄巧建  刘晓峻 《中国物理 B》2008,17(11):4273-4278
This paper uses finite element method to obtain the three-dimensional temperature field of laser-induced transient thermal grating (TTG) for two-layered structure of diamond film on ZnSe substrate. The numerical results indicate that unique two-times heating process is gradually experienced in the area between two adjacent grating stripes. However, there is a little change for the temperature field along the depth direction for the diamond film due to its great thermal conductivity. It further finds that the thickness of the diamond film has a significant influence on the temperature field in diamond/ZnSe system. The results are useful for the application of laser-induced TTG technique in film/substrate system.  相似文献   
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