Relating supercooling and glass-like arrest of kinetics for phase separated systems: Doped CeFe 2 and (La,Pr,Ca)MnO 3

@article{Kumar2006RelatingSA,
  title={Relating supercooling and glass-like arrest of kinetics for phase separated systems: Doped CeFe 2 and (La,Pr,Ca)MnO 3},
  author={K. Kumar and A. Pramanik and A. Banerjee and P. Chaddah and S. Roy and S. Park and C. Zhang and S. Cheong},
  journal={Physical Review B},
  year={2006},
  volume={73},
  pages={184435}
}
Coexisting ferromagnetic and antiferromagnetic phases over a range of temperature as well as magnetic field have been reported in many materials of current interest, showing disorder-broadened first-order transitions. Anomalous history effects observed in magnetization and resistivity are being explained invoking the concepts of kinetic arrest akin to glass transitions. From magnetization measurements traversing unusual paths in field-temperature space, we obtain the intriguing result that the… Expand
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Nanoscale Phase Separation and Colossal Magnetoresistance
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