Department of Physics, Osaka City University, Sumiyoshi-ku, Osaka 558-8585, Japan.
Department of Mathematics, Imperial College London, London SW7 2AZ, United Kingdom.
Phys Rev Lett. 2018 Mar 23;120(12):126802. doi: 10.1103/PhysRevLett.120.126802.
We study the higher-order Fermi-liquid relations of Kondo systems for arbitrary impurity-electron fillings, extending the many-body quantum theoretical approach of Yamada and Yosida. It includes, partly, a microscopic clarification of the related achievements based on Nozières' phenomenological description: Filippone, Moca, von Delft, and Mora [Phys. Rev. B 95, 165404 (2017)PRBMDO2469-995010.1103/PhysRevB.95.165404]. In our formulation, the Fermi-liquid parameters such as the quasiparticle energy, damping, and transport coefficients are related to each other through the total vertex Γ_{σσ^{'};σ^{'}σ}(ω,ω^{'};ω^{'},ω), which may be regarded as a generalized Landau quasiparticle interaction. We obtain exactly this function up to linear order with respect to the frequencies ω and ω^{'} using the antisymmetry and analytic properties. The coefficients acquire additional contributions of three-body fluctuations away from half filling through the nonlinear susceptibilities. We also apply the formulation to nonequilibrium transport through a quantum dot, and clarify how the zero-bias peak evolves in a magnetic field.
我们研究了任意杂质电子填充的 Kondo 系统的高阶费米液体关系,扩展了 Yamada 和 Yosida 的多体量子理论方法。它部分包括对基于 Nozières 唯象描述的相关成果的微观澄清:Filippone、Moca、von Delft 和 Mora [Phys. Rev. B 95, 165404 (2017)PRBMDO2469-995010.1103/PhysRevB.95.165404]。在我们的表述中,费米液体参数,如准粒子能量、阻尼和输运系数,通过总顶点 Γ_{σσ^{'};σ^{'}σ}(ω,ω^{'};ω^{'},ω)相互关联,这可以看作是广义的 Landau 准粒子相互作用。我们利用反称性和解析性质精确地得到了这个函数,直到ω和ω^{'}的线性阶。系数通过非线性磁化率获得了远离半填充的三体涨落的附加贡献。我们还将该表述应用于量子点的非平衡输运,并澄清了零偏压峰如何在磁场中演化。