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Intrinsic arrested nanoscale phase separation near a topological Lifshitz transition in strongly correlated two-band metals

机译:强相关两波段金属中拓扑Lifshitz跃迁附近的本征阻滞纳米级相分离

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摘要

The arrested nanoscale phase separation in a two-band Hubbard model for strongly correlated charge carriers is shown to occur in a particular range in the vicinity of the topological Lifshitz transition, where the Fermi energy crosses the bottom of the narrow band and a new sheet of the Fermi surface related to the charge carriers of the second band comes into play. We determine the phase separation diagram of this two-band Hubbard model as a function of two variables, the charge carrier density and the energy shift between the chemical potential and the bottom of the second band. In this phase diagram, we first determine a line of quantum critical points for the Lifshitz transition and find criteria for the electronic phase separation resulting in an inhomogeneous charge distribution. Finally, we identify the critical point in the presence of a variable long-range Coulomb interaction where the scale invariance of the coexisting phases with different charge densities appears. We argue that this point is relevant for the regime of scale invariance of the nanoscale phase separation in cuprates like it was first observed in La2CuO4.1.
机译:在两波段Hubbard模型中,对于强相关电荷载流子,被捕的纳米级相分离显示在拓扑Lifshitz跃迁附近,在特定范围内发生,费米能量穿过窄带的底部,新的与第二能带的载流子有关的费米面开始起作用。我们根据两个变量(电荷载流子密度和化学势与第二个谱带的底部之间的能量转移)确定这两个谱带的Hubbard模型的相分离图。在此相图中,我们首先确定Lifshitz跃迁的量子临界点线,并找到电子相分离的标准,从而导致电荷分布不均匀。最后,我们在存在可变的远程库仑相互作用的情况下确定临界点,在该相互作用中出现了具有不同电荷密度的共存相的尺度不变性。我们认为,这一点与铜酸盐中纳米尺度相分离的尺度不变性机制有关,就像在La2CuO4.1中首次观察到的那样。

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