论文标题

Spinon费米表面和重型费米液体的竞争从周期性的安德森到哈伯德模型

Competition of Spinon Fermi Surface and Heavy Fermi Liquids states from the Periodic Anderson to the Hubbard model

论文作者

Chen, Chuan, Sodemann, Inti, Lee, Patrick A.

论文摘要

我们研究了一个相关电子模型,该模型通过隧穿到一层流动的金属电子,该模型允许从有利于旋转液态的沮丧的极限插入到有利于层中层相干重金属状态的亲to晶状体的极限上。我们研究了Spinon Fermi表面状态和随着隧道的增加而出现的层间相干性近型金属的竞争。我们采用了一个均值场图,我们获得了一个相图并描述了两个方案,其中旋转的液态态被弱层间隧穿破坏,(i)近托极限可以将相关的电子视为局部旋转矩,而(ii)在莫特金属仪器 - 纤维化纤维纤维表面持续过渡的地方固定型纤维纤维传输均固定过渡效率。我们研究了沉重的费米液相中假定旋转液体层的LDOS光谱的形状,并描述了其在整个相图中由准粒子相互作用和混乱效应引起的宽度的温度依赖性,以了解候选旋转液体液体1T-Tase $ _2 $ _2 $ _2 $的最新STM实验。理论和实验LDOS的形状和温度依赖性比较表明,该系统要么接近局部近代极限,要么在中间耦合方面,在中间耦合方面,在该方案中,近托耦合和Heisenberg交换相互作用是可比的。

We study a model of correlated electrons coupled by tunnelling to a layer of itinerant metallic electrons, which allows to interpolate from a frustrated limit favorable to spin liquid states to a Kondo-lattice limit favorable to interlayer coherent heavy metallic states. We study the competition of the spinon fermi surface state and the interlayer coherent heavy Kondo metal that appears with increasing tunnelling. Employing a slave rotor mean-field approach, we obtain a phase diagram and describe two regimes where the spin liquid state is destroyed by weak interlayer tunnelling, (i) the Kondo limit in which the correlated electrons can be viewed as localized spin moments and (ii) near the Mott metal-insulator-transition where the spinon Fermi surface transitions continuously into a Fermi liquid. We study the shape of LDOS spectra of the putative spin liquid layer in the heavy Fermi liquid phase and describe the temperature dependence of its width arising from quasiparticle interactions and disorder effects throughout this phase diagram, in an effort to understand recent STM experiments of the candidate spin liquid 1T-TaSe$_2$ residing on metallic 1H-TaSe$_2$. Comparison of the shape and temperature dependence of the theoretical and experimental LDOS suggest that this system is either close to the localized Kondo limit, or in an intermediate coupling regime where the Kondo coupling and the Heisenberg exchange interaction are comparable.

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