Spin-entropy origin and scaling behaviour of thermopower in LaBaCoO system
ORAL
Abstract
We report a detailed investigation of thermopower and magnetic properties for La$_{1-x}$Ba$_x$CoO$_3$. A large negative magnetothempower is found to scale with both magnetic field and temperature, indicating that a spin entropy contribution to thermompower. We have formulated a new and general expression to describe the thermopower from spin entropy with spin-interaction considered. Our formula can fit the scaling behavior quite well and provides a satisfactory description to the observed data. The magnetic results further consolidate our claim. This investigation suggests that spin entropy plays a substantial role in the enhanced thermopower in this cobaltite system.
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Authors
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Dewei Zhang
National Laboratory of Solid State Microstructures and Department of Physics, Nanjing University
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Huaihong Guo
Institute of Metal Research, Chinese academy of Sciences, Institute Of Metal Research, Chinese Academy of Sciences
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Teng Yang
Institute of Metal Research, Chinese academy of Sciences, Institute Of Metal Research, Chinese Academy of Sciences
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Zhihe Wang
National Laboratory of Solid State Microstructures and Department of Physics, Nanjing University
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Zhidong Zhang
Institute of Metal Research, Chinese academy of Sciences, Institute Of Metal Research, Chinese Academy of Sciences
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Youwei Du
National Laboratory of Solid State Microstructures and Department of Physics, Nanjing University