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Doping and Field-Induced Insulator-Metal Transitions in Half-Doped Manganites

机译:半掺杂锰中的掺杂和场致绝缘体-金属跃迁

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摘要

We argue that many properties of the half-doped manganites may be understood in terms of a new two-($e_{g}$ electron)-fluid description,which is energetically favorable at intermediate Jahn-Teller (JT)coupling. This emerges from a competition between canting of the corespins of Mn promoting mobile carriers and polaronic trapping of carriers by JT defects, in the presence of magnetic (CE), orbital and charge order. Using it we explain features of the doping and magnetic-field-induced insulator-metal transitions such as the electron-hole asymmetry and the smallness of the transition fields.
机译:我们认为,半掺杂锰铁矿的许多特性可以通过新的两个($ e_ {g} $电子)流体描述来理解,这在中间Jahn-Teller(JT)耦合方面非常有利。这是在存在磁性(CE),轨道和电荷顺序的情况下,促进移动载体的Mnspins的倾斜与JT缺陷导致的载体的极化子俘获之间的竞争而产生的。我们用它解释了掺杂和磁场引起的绝缘体-金属跃迁的特征,例如电子-空穴不对称和跃迁场的小。

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