Heat transmission between a profiled nanowire and a thermal bath
Christophe Blanc, Jean-Savin Heron, Thierry Fournier, Olivier Bourgeois
Abstract
Christophe Blanc, Jean-Savin Heron, Thierry Fournier, Olivier Bourgeois
Abstract
Thermal transport through profiled and abrupt contacts between a nanowire and a reservoir has been investigated by thermal conductance measurements. It is demonstrated that above 1 K the transmission coefficients are identical between abrupt and profiled junctions. This shows that the thermal transport is principally governed by the nanowire itself rather than by the resistance of the thermal contact. These results are perfectly compatible with the previous theoretical models. The thermal conductance measured at sub-Kelvin temperatures is discussed in relation to the universal value of the quantum of thermal conductance.
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Thermal transport through profiled and abrupt contacts between a nanowire and a reservoir has been investigated by thermal conductance measurements. It is demonstrated that above 1 K the transmission coefficients are identical between abrupt and profiled junctions. This shows that the thermal transport is principally governed by the nanowire itself rather than by the resistance of the thermal contact. These results are perfectly compatible with the previous theoretical models. The thermal conductance measured at sub-Kelvin temperatures is discussed in relation to the universal value of the quantum of thermal conductance.
Key concepts: Nanowire, Thermal conductivity, Thermal contact conductance, Thermal, Thermal resistance, Materials science, Conductance, Condensed matter physics