The thermal conductivities of thermally oxidated SiO2 films of 98 nm, 148 nm, and 322 nm in thickness on Si substrate are measured using modulated photothermal reflectance technique. In the measuring principle, the equivalent transmission-line analysis is applied to the multilayer heat conduction problem and the simulated annealing algorithm is applied in the inverse analysis for determining the thermal conductivity and thermal boundary resistance. The thermal conductivity of the nano-SiO2 film is found being less than its bulk value and thickness dependent. The thermal boundary resistance between SiO2 and Al coating is found being comparable to the thermal resistance of the SiO2 layer. (C) 2008 Elsevier B.V. All rights reserved
Thermal conductivity (denoted as k, j, or k) measures the heat conducting capability of a mate...
This work discusses measurement of thermal conductivity (k) of films using a scanning hot probe meth...
Photothermal reflectance and photothermal displacement measurements of optical absorption and therma...
[[abstract]]In this paper, we describe an easy-to-use method to measure the thermal conductivity of ...
This final year project presents the thermal property measurements of several nanoscale thin film m...
In this article the photothermal reflectivity probing method is used to evaluate the thermal propert...
International audienceReduction of the phonon thermal conductivity of thin films as their thickness ...
Thermal conductivity of submicron-thick aluminium oxide thin films prepared by middle frequency magn...
This work develops an amplitude method for the photothermal (PT) technique to analyze the amplitude ...
In this work, spreading of temperature profiles and influence of a temperature on forming silicon na...
In this work, we report on the measurement of the thermal conductivity of thin insulating films of S...
The prediction and measurement of the thermal conductivity, k, of crystalline materials, particularl...
This experiment presents to you the extraction of thermal properties of single wall carbon nanotube ...
Measuring thermal conductivity of nanoscale thin layers in a multilayer device is a fundamental task...
Thermal conductivity (denoted as k, j, or k) measures the heat conducting capability of a mate...
Thermal conductivity (denoted as k, j, or k) measures the heat conducting capability of a mate...
This work discusses measurement of thermal conductivity (k) of films using a scanning hot probe meth...
Photothermal reflectance and photothermal displacement measurements of optical absorption and therma...
[[abstract]]In this paper, we describe an easy-to-use method to measure the thermal conductivity of ...
This final year project presents the thermal property measurements of several nanoscale thin film m...
In this article the photothermal reflectivity probing method is used to evaluate the thermal propert...
International audienceReduction of the phonon thermal conductivity of thin films as their thickness ...
Thermal conductivity of submicron-thick aluminium oxide thin films prepared by middle frequency magn...
This work develops an amplitude method for the photothermal (PT) technique to analyze the amplitude ...
In this work, spreading of temperature profiles and influence of a temperature on forming silicon na...
In this work, we report on the measurement of the thermal conductivity of thin insulating films of S...
The prediction and measurement of the thermal conductivity, k, of crystalline materials, particularl...
This experiment presents to you the extraction of thermal properties of single wall carbon nanotube ...
Measuring thermal conductivity of nanoscale thin layers in a multilayer device is a fundamental task...
Thermal conductivity (denoted as k, j, or k) measures the heat conducting capability of a mate...
Thermal conductivity (denoted as k, j, or k) measures the heat conducting capability of a mate...
This work discusses measurement of thermal conductivity (k) of films using a scanning hot probe meth...
Photothermal reflectance and photothermal displacement measurements of optical absorption and therma...