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- W2022220986 abstract "A sudden increase in the electrostrictive coefficient ${Q}_{13}$ when temperature decreases is seen in three different types of ferroelectric relaxors (PLZT 9/65/35, PLZT 22/20/80, and PMN-PT) starting from $ensuremath{sim}50text{ }text{K}$ above the dielectric permittivity maximum temperature, ${T}_{m}$. The temperature dependence is attributed to the softening of the quasilocal mode occurring near dopants or charge-transfer sites. The steep increase when the temperature decreases could be related to the transition of polar nanoregions from dynamic to quasistatic regime, which introduces an intermediate temperature scale ${T}^{ensuremath{ast}}$ [W. Dmowski, S. B. Vakhrushev, I.-K. Jeong, M. P. Hehlen, F. Trouw, and T. Egami, Phys. Rev. Lett. 100, 137602 (2008); B. Dkhil, P. Gemeiner, A. Al-Barakaty, L. Bellaiche, E. Dul'kin, E. Mojaev, and M. Roth, Phys. Rev. B 80, 064103 (2009)], besides Burns temperature ${T}_{B}$ and freezing temperature ${T}_{f}$. Possible consequences for nonequilibrium phenomena, including high-temperature memory found in relaxors, are conjectured." @default.
- W2022220986 created "2016-06-24" @default.
- W2022220986 creator A5033103955 @default.
- W2022220986 date "2010-05-28" @default.
- W2022220986 modified "2023-09-23" @default.
- W2022220986 title "Strong variation of electrostrictive coupling near an intermediate temperature of relaxor ferroelectrics" @default.
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- W2022220986 doi "https://doi.org/10.1103/physrevb.81.184111" @default.
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