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Specific heat of underdoped cuprat.es: Resonating valence bond description versus Fermi arcs

机译:掺杂不足的铜的比热:共振价键描述与费米弧的关系

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摘要

A recent microscopic model of the pseudogap state, based on the resonating valence bond (RVB) spin liquid, has provided a simple ansatz for the electronic self-energy in which a gap forms on the antiferromagnetic Brillouin zone as the limit of a Mott insulator is approached in the underdoped regime. Here, the ansatz is employed to calculate the electronic specific heat when a superconducting gap is also included. We find qualitative agreement with all experimental observations in the underdoped regime of the cuprates. We explore the relationship of the theory to two other purely phenomenological approaches, the nodal liquid and the Fermi arc model, and provide justification for their use on experimental data in light of this microscopic RVB theory.
机译:基于共振价键(RVB)自旋液体的伪能隙状态的最新微观模型为电子自能提供了简单的ansatz,其中在反铁磁布里渊区上形成了一个间隙,因为莫特绝缘子的极限是在掺杂不足的政权中接近。在此,当还包括超导间隙时,使用ansatz来计算电子比热。我们发现,在低掺杂的铜酸盐体系中,所有实验观察在质量上都一致。我们探索该理论与其他两种纯粹现象学方法(节点液体和费米弧模型)的关系,并根据这种微观RVB理论为其在实验数据上的使用提供依据。

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