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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Anomalous self-energy and Fermi surface quasisplitting in the vicinity of a ferromagnetic instability
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Anomalous self-energy and Fermi surface quasisplitting in the vicinity of a ferromagnetic instability

机译:铁磁不稳定性附近的异常自能量和费米表面拟分裂

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We discuss the low-temperature behavior of the electronic self-energy in the vicinity of a ferromagnetic instability in two dimensions within the two-particle self-consistent approximation, functional renormalization group, and Ward-identity approaches. Although the long-range magnetic order is absent at T > 0, the self-energy has a non-Fermi-liquid form at low energies |ω| approx< Δ_0 near the Fermi level, where Δ_0 is the ground-state spin splitting. The spectral function at temperatures T approx < Δ_0 has a two-peak structure with finite spectral weight at the Fermi level. The simultaneous inclusion of self-energy and vertex corrections shows that the above results remain qualitatively unchanged down to very low temperatures T < < Δ_0. It is argued that this form of the spectral functions implies the quasisplitting of the Fermi surface in the paramagnetic phase in the presence of strong ferromagnetic fluctuations.
机译:我们讨论了在两粒子自洽近似,函数重整化组和Ward-identity方法中的二维内,铁磁不稳定性附近电子自能的低温行为。尽管在T> 0时没有远距离磁阶,但自能在低能|ω|时具有非费米液体形式。在费米能级附近大约<Δ_0,其中Δ_0是基态自旋分裂。温度T约<Δ_0时的光谱函数具有费米能级具有有限光谱权重的两峰结构。同时包含自能和顶点校正表明,直到很低的温度T Δ_0,上述结果在质量上保持不变。有人认为,这种形式的频谱函数意味着在强铁磁波动存在的情况下,顺磁相中费米表面的准分裂。

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