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Model for phase separation controlled by doping and the internal chemical pressure in different cuprate superconductors

机译:不同铜酸盐超导体的掺杂和内部化学压力控制的相分离模型

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摘要

In the framework of a two-band model, we study the phase-separation regime of different kinds of strongly correlated charge carriers as a function of the energy splitting between the two sets of bands. The narrow (wide) band simulates the more localized (more delocalized) type of charge carriers. By assuming that the internal chemical pressure on the CuO2 layer due to interlayer mismatch controls the energy splitting between the two sets of states, the theoretical predictions are able to reproduce the regime of phase separation at doping higher than 1/8 in the experimental pressure-doping- Tc phase diagram of cuprates at large microstrain as it appears in overoxygenated La2 CuO4. © 2008 The American Physical Society.
机译:在两频带模型的框架内,我们研究了不同类型的强相关电荷载流子的相分离机制,这是两组频带之间能量分配的函数。窄(宽)带模拟电荷载流子的局部化(局部化程度更高)类型。通过假设由于层间失配而导致的CuO2层上的内部化学压力控制了两组状态之间的能量分配,理论预测能够在实验压力下重现高于1/8的掺杂时的相分离状态-铜酸盐在超微氧化La2 CuO4中的大应变下的掺杂-Tc相图。 ©2008美国物理学会。

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