Giant dielectric constant response in a copper-titanate

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Abstract

We describe a material, cubic CaCu3Ti4O12, which exhibits a large dielectric response, the temperature-dependence of which has not been seen, to our knowledge, in any existing material. This compound possesses a low-frequency dielectric constant, ε to approximately 104, which is only weakly varying in the temperature range 100-400 K. Below T to approximately 100 K, however, there is an abrupt 100-fold reduction in the value of ε. X-ray diffraction and thermodynamic data argue against an explanation in terms of ferroelectricity, i.e. the collective ordering of local dipole moments. Both the low-frequency dielectric response as well as Raman scattering data suggest the existence of highly polarizable relaxational modes with a characteristic gap energy of 28 meV.

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Ramirez, A. P., Subramanian, M. A., Gardel, M., Blumberg, G., Li, D., Vogt, T., & Shapiro, S. M. (2000). Giant dielectric constant response in a copper-titanate. Solid State Communications, 115(5), 217–220. https://doi.org/10.1016/S0038-1098(00)00182-4

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