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首页> 外文期刊>Physical Review, B. Condensed Matter >Multiphase segregation and metal-insulator transition in single crystal La5/8-yPryCa3/8MnO3 - art. no. 024420
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Multiphase segregation and metal-insulator transition in single crystal La5/8-yPryCa3/8MnO3 - art. no. 024420

机译:单晶La5 / 8-yPryCa3 / 8MnO3中的多相偏析和金属-绝缘体转变-艺术。没有。 024420

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The insulator-metal transition in single crystal La5/8-yPryCa3/8MnO3 with y approximate to 0.35 was studied using synchrotron x-ray diffraction, electric resistivity, magnetic susceptibility, and specific heat measurements. Despite the dramatic drop in the resistivity at the insulator-metal transition temperature T-MI, the charge-ordering (CO) peaks exhibit no anomaly at this temperature and continue to grow below T-MI Our data suggest then, that in addition to the CO phase. another insulating phase is present below T-CO. In this picture, the insulator-metal transition is due to the changes that occur within this latter phase. The CO phase does not appear to play a major rule in this transition. We propose that a percolationlike insulator-metal transition occurs via the growth of ferromagnetic metallic domains within the parts of the sample that do not exhibit charge ordering. Finally, we find that the low-temperature phase-separated state is unstable against x-ray irradiation, which destroys the CO phase at low temperatures. [References: 33]
机译:使用同步加速器X射线衍射,电阻率,磁化率和比热测量研究了y约为0.35的单晶La5 / 8-yPryCa3 / 8MnO3中的绝缘体-金属过渡。尽管在绝缘体-金属转变温度T-MI处电阻率急剧下降,但在此温度下,电荷有序(CO)峰没有异常,并继续增长到T-MI以下。我们的数据表明,除了一氧化碳相。 T-CO下方存在另一个绝缘相。在此图中,绝缘体-金属的过渡是由于在后一阶段内发生的变化而引起的。在此过渡过程中,CO阶段似乎没有发挥主要作用。我们建议通过样品中未表现出电荷有序性的部分中的铁磁金属畴的生长发生类似渗流的绝缘体-金属转变。最后,我们发现低温相分离状态对于X射线辐射不稳定,这会破坏低温下的CO相。 [参考:33]

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