论文标题
带电的二维Dirac Systems的流体动力学II:集体模式的作用
Hydrodynamics of charged two-dimensional Dirac systems II: the role of collective modes
论文作者
论文摘要
我们研究了超精细相互作用的二维狄拉克电子与Keldysh量子场理论的流体动力特性。我们从弱耦合和强耦合的角度研究它。我们证明,远程库仑相互作用扮演了两个独立的角色:(i)它们提供了无弹性和动量的散射机制,从而导致局部均衡; (ii)它们促进了集体激发的出现,例如等离子体,这些激发有助于与电子相等地位的运输特性。我们的方法基于与电子结合的集体场的有效田地理论。在耦合系统的保存近似中,我们得出了一组耦合的量子运动方程。这为电子和等离子的相互作用系统的玻尔兹曼方程衍生而建立了基础。从中,我们明确得出了所有保护定律,并确定了等离子的能量密度和压力的额外贡献。我们证明,在热电动传输性能以及进入能量弹药张量的数量(例如粘度)中显示的等离子。在平行论文中,我们讨论了相应流体动力方程的某些现象学,并着眼于热电动传输特性。
We study the hydrodynamic properties of ultraclean interacting two-dimensional Dirac electrons with Keldysh quantum field theory. We study it from a weak-coupling and a strong-coupling perspective. We demonstrate that long-range Coulomb interactions play two independent roles: (i) they provide the inelastic and momentum-conserving scattering mechanism that leads to fast local equilibration; (ii) they facilitate the emergence of collective excitations, for instance plasmons, that contribute to transport properties on equal footing with electrons. Our approach is based on an effective field theory of the collective field coupled to electrons. Within a conserving approximation for the coupled system we derive a set of coupled quantum-kinetic equations. This builds the foundation of the derivation of the Boltzmann equations for the interacting system of electrons and plasmons. From this, we explicitly derive all the conservation laws and identify the extra contributions of energy density and pressure from the plasmons. We demonstrate that plasmons show up in thermo-electric transport properties as well as in quantities that enter the energy-momentum tensor, such as the viscosity. In a parallel paper we discuss some of the phenomenology of the corresponding hydrodynamic equations with an eye on thermo-electric transport properties.