Title of article :
Thermal Diffusivity Measurement of Isotopically Enriched 28-Si Single Crystal by Dynamic Grating Radiometry
Author/Authors :
Y. Taguchi and Y. Nagasaka ، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Abstract :
In the past decade it has been suggested that the isotopic enrichment of 28-silicon
enhances its thermal properties. Thus, 28-silicon is suitable as a heat sink in
large-scale iIntegrated circuits. Although some studies have focused on the measurement
of isotopically enriched silicon’s thermal properties, accurate experimental
data are not sufficient because of this material’s high conductivity and
large heat capacity which make measurement difficult. However, the dynamic
grating radiometry (DGR) method has been successfully developed to measure
the thermal diffusivity of 28-silicon. In the DGR method, the sample is heated
by iInterference of two pulsed laser beams, and the temperature decay is
monitored by an infrared detector. By analyzing the temperature changes of the
peaks and valleys of the thermal grating, the thermal diffusivities parallel and
perpendicular to the sample surface are obtained simultaneously. In this paper,
the optimum conditions of the experimental setup for measuring isotopically
enriched silicon are discussed. The comparison of thermal diffusivities between
28-silicon and natural silicon (with a thickness of about 100 mm) is preseInted,
and the applicability of DGR to isotope engineering is reported.
Keywords :
dynamic grating radiometry , high-conductivity thin film , isotopically enriched 28-silicon , isotope engineering , thermal diffusivity.
Journal title :
International Journal of Thermophysics
Journal title :
International Journal of Thermophysics