Measurements of the temperature dependence of the attenuation of 9-Gc/sec phonons are presented. They include measurements on crystals of quartz, CdS, GaAs, Ge, Si, CaF₂, Al₂{O}₃$, and MgO in several directions and modes of polarization. The attenuation in most of the materials is proportional to ${T}ⁿ$, where the average value of $n=4.1±{}1.2for the fast transverse waves, 4.0±1.7 for the slow transverse waves, 4.8±1.4 for the longitudinal waves. For MgO and{Al}₂O₃ the attenuation is proportional to the frequency of the sound between 3 and 9 Gc/sec. An empirical correlation of the data is that the attenuation of 9-Gc/sec phonons is 3 dB/cm when (TΘ)≈0.1, where Θ=Debyetemperatureofthecrystal. Values of the third-order elastic constants are used to make absolute comparisons of the theory of attenuation by three-phonon processes with the data. The agreement is good in some cases but not in others.
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M. Pomerantz (1965) studied this question.
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