论文标题
各向异性费米金准颗粒
Anisotropic Fermionic Quasiparticles
论文作者
论文摘要
在存在裸露的质量各向异性(即具有椭圆形非互动费尔曼表面)的情况下,通过计算自动化,频谱函数,散射速率和有效的动态范围,我们对二维电子气体的准特性进行了全面研究,并通过远距离库仑相互作用进行了相互作用。我们发现了Quasiparticle特性的新型各向异性特征,这些特征未被各向同性近似捕获,其中各向异性有效质量被各向同性平均密度的质量所取代。其中一些有趣的结果是:(1)准粒子光谱的重新归一化变化变得高度各向异性,而准粒子能量远离费米能量; (2)非弹性散射速率具有强各向异性,根据注射电子的动量方向,以不同的注射能量突然跳跃; (3)有效质量各向异性通过相互作用降低。我们的结果和分析表明,尽管在许多情况下,在许多情况下,使用等效的各向同性近似值的使用有效质量是合理的近似值,但对质量各向异性的不合理忽略可能导致对各向异性系统的准粒子性质的不正确描述。我们还使用等离子体杆近似的理论,评论了其对各向异性自我能量计算的有效性。我们还评论了对费米表面拓扑的相互作用效果,发现在相互作用的系统中保留了裸露的费米表面的椭圆形,并具有抑制的椭圆形,以高度准确。我们的理论提供了对相应各向异性系统相互作用的现有各向同性多体型理论的完全概括。
We have carried out a comprehensive investigation of the quasiparticle properties of a two-dimensional electron gas, interacting via the long-range Coulomb interaction, in the presence of bare mass anisotropy (i.e. with an elliptic noninteracting Fermi surface) by calculating the self-energy, the spectral function, the scattering rate, and the effective mass within the leading order dynamical self-energy approximation. We find novel anisotropic features of quasiparticle properties that are not captured by the isotropic approximation where the anisotropic effective mass is replaced by the isotropic averaged density-of-states mass. Some of these interesting results are: (1) the renormalization of the quasiparticle spectrum becomes highly anisotropic as the quasiparticle energy increases away from the Fermi energy; (2) the inelastic scattering rate features a strong anisotropy, exhibiting an abrupt jump at different injected energies depending on the momentum direction of the injected electron; (3) the effective mass anisotropy is reduced by interactions. Our results and analysis show that the unjustified neglect of the mass anisotropy can lead to an incorrect description of quasiparticle properties of the anisotropic system although the use of an equivalent isotropic approximation using the density-of-states effective mass works as a reasonable approximation in many situations. We also provide a theory using the plasmon-pole approximation, commenting on its validity for anisotropic self-energy calculations. We comment also on the interaction effect on the Fermi surface topology, finding that the elliptic shape of the bare Fermi surface is preserved, with suppressed ellipticity, in the interacting system to a high degree of accuracy. Our theory provides a complete generalization of the existing isotropic many-body theory of interacting electrons to the corresponding anisotropic systems.