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Low temperature elastic constants and Debye temperature of NbO2
Authors:JG Bennett  RJ Sladek
Institution:Department of Physics, Purdue University, West Lafayette, IN 47907, USA
Abstract:The transit times of ultrasonic waves have been measured in single crystal NbO2 from 295 K down to 1.5 K for quasilongitudinal and shear waves propagating in the 100] direction and down to 160 K for eight other waves. Values are obtained for the C44 elastic constant and for an elastic constant combination which is approximately equal to C11 for temperatures down to 1.5 K and for C11, C12, C13, C16, C33, and C66 down to 160 K. These results are used to deduce 0 K values for the elastic constants and an elastic Debye temperature of 596 ± 7 K at 1.5 K. The acoustic mode heat capacity calculated from the latter is significantly smaller than the heat capacity measured by Wenger and Keesom at low temperatures. Following Wenger and Keesom, the difference is attributed to phasons (excitations involving the phase modulation of charge density waves). An average velocity is deduced for the phasons.
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