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随着高新技术的迅速发展,许多研究对象已进入亚微米和纳米范畴。在对这些对象的热性能和热可靠性的研究中,亚微米尺度的热物性测量已成为关键技术之一。例如:在微电子、微电子机械系统(MEMS)领域中,已使用纳米量级厚度的材质和做出纳米尺度线宽的器件。在材料科学、生物学、医学和化学等许多领域,高空间分辨率下的热物性测量也具有重要意义。

The application of scanning thermal microscope (SThM) in measurements of the thermal conductivity distribution, and then, the non-uniformity of materials on a micro-scale has been discussed. The thermal image obtained by SThM showed the thermal conductivity contrast of a silicon-silicon dioxide sample on a micrometer scale. The principle used to measure the thermal diffusivity and conductivity with high lateral resolution by SThM is proposed.

参考文献

[1] Majumdar A .Scanning Thermal Microscopy at NanometerScales-A New Frontier in Experimental Heat Transfer[J].Experimental Heat Transfer,1996,9(02):83-103.
[2] Digital Instruments Corp .Support Note No.235 Rev.A[Z].,1996.
[3] Luo K.;Varesi J.;Majumdar A.;Shi Z. .SENSOR NANOFABRICATION, PERFORMANCE, AND CONDUCTION MECHANISMS IN SCANNING THERMAL MICROSCOPY[J].Journal of Vacuum Science & Technology, B. Microelectronics and Nanometer Structures: Processing, Measurement and Phenomena,1997(2):349-360.
[4] 晋宏师,顾毓沁,陈皓明,朱德忠,韩立,谢志刚.高空间分辨率的热测试技术--扫描热显微技术[J].计量学报,1999(04):266.
[5] 陈则韶;葛新石;顾毓沁.量热技术和热物性测定[M].合肥:中国科学技术大学出版社,1990
[6] 乐光启;吴玉良 .调制激光束的温度效应[J].清华大学学报(自然科学版),1990,30(01):104-111.
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