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Orthogonal metals: The simplest non-Fermi liquids

机译:正交金属:最简单的非费米液体

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We present a fractionalized metallic phase which is indistinguishable from the Fermi liquid in conductivity and thermodynamics, but is sharply distinct in one-electron properties, such as the electron spectral function. We dub this phase the "orthogonal metal." The orthogonal metal and the transition to it from the Fermi liquid are naturally described using a slave-particle representation wherein the electron is expressed as a product of a fermion and a slave Ising spin. We emphasize that when the slave spins are disordered, the result is not a Mott insulator (as erroneously assumed in the prior literature), but rather the orthogonal metal. We construct prototypical ground-state wave functions for the orthogonal metal by modifying the Jastrow factor of Slater-Jastrow wave functions that describe ordinary Fermi liquids. We further demonstrate that the transition from the Fermi liquid to the orthogonal metal can, in some circumstances, provide a simple example of a continuous destruction of a Fermi surface with a critical Fermi surface appearing right at the critical point. We present exactly soluble models that realize an orthogonal metal phase, and the phase transition to the Fermi liquid. These models thus provide valuable solvable examples for phase transitions associated with the death of a Fermi surface.
机译:我们提出了一种分馏的金属相,在电导率和热力学上与费米液体没有区别,但在单电子性质(如电子光谱函数)方面却截然不同。我们将此阶段称为“正交金属”。正交金属及其从费米液体到其的跃迁使用从属粒子表示法自然地描述,其中电子表示为费米子和从属伊辛自旋的乘积。我们强调,当从属自旋无序时,结果不是Mott绝缘体(如先前文献中错误假定),而是正交金属。我们通过修改描述普通费米液体的Slater-Jastrow波函数的Jastrow因子,构造正交金属的原型基态波函数。我们进一步证明,在某些情况下,从费米液体到正交金属的过渡可以提供连续破坏费米表面的简单示例,而费米表面恰好出现在临界点。我们提出了完全可溶的模型,这些模型实现了正交的金属相以及向费米液体的相变。因此,这些模型为与费米表面的死亡相关的相变提供了有价值的可解决示例。

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