论文标题
电子的中级理论与沮丧的本地词相结合
Intermediate-scale theory for electrons coupled to frustrated local-moments
论文作者
论文摘要
在弱相互作用的费米液体中破坏长寿命的电子准粒子的经典途径是将它们搭配到其他有效充当浴缸的低能自由度。我们在这里考虑了电子散射出几何沮丧的抗铁磁铁的自旋波动的问题,其非线性Landau-lifshitz动力学在所有温度下均无平底,我们详细介绍了它。在中等温度和没有任何磁性顺序的情况下,波动的局部音压导致沿费米表面的散射率的非平凡角各向异性,随着温度的增加消失,阐明了“热点”的作用。在中等温度和高温的非常宽的窗口上,可以通过使用局部近似来描述电子性质。我们与更熟悉的电子设置相反,这些电子散射从经典的声子散射出来,其高温极限从根本上有所不同,这是由于其无限的Hilbert空间而有所不同。我们将结果放在分层的磁性delafossite化合物的背景下。
A classic route for destroying long-lived electronic quasiparticles in a weakly interacting Fermi liquid is to couple them to other low-energy degrees of freedom that effectively act as a bath. We consider here the problem of electrons scattering off the spin fluctuations of a geometrically frustrated antiferromagnet, whose non-linear Landau-Lifshitz dynamics, which remains non-trivial at all temperatures, we model in detail. At intermediate temperatures and in the absence of any magnetic ordering, the fluctuating local-moments lead to a non-trivial angular anisotropy of the scattering-rate along the Fermi surface, which disappears with increasing temperature, elucidating the role of "hot-spots". Over a remarkably broad window of intermediate and high temperatures, the electronic properties can be described by employing a local approximation for the dynamical spin-response. This we contrast with the more familiar setup of electrons scattering off classical phonons, whose high-temperature limit differs fundamentally on account of their unbounded Hilbert space. We place our results in the context of layered magnetic delafossite compounds.