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Phenomenological theory of the anomalous normal-state transport properties of iron pnictides

机译:铁素化物异常态态输运特性的现象学理论

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We employ the phenomenological theory of the quasiparticle relaxation based on the simplified two-band description and the spin-fluctuation mediated interband coupling to analyze recent normal-state transport data in electron-doped iron pnictides, in particular the Ba(Fe_(1-x)Co_x)_2As_2 family. The temperature and doping dependence of the resistivity, thermopower, and the Hall constant are evaluated. We show that their anomalous behavior emerging from experiments can be consistently described within the same framework assuming also "marginal," i.e., non-Fermi-liquid-like spin fluctuations provided, however, that the interband coupling is quite strong. We also show that a large thermopower as experimentally observed results from an asymmetric energy-dependent quasiparticle relaxation rate and due to the semimetallic character of both bands.
机译:我们采用基于简化的两个谱带描述和自旋涨落介导的谱带间耦合的准粒子弛豫的现象学理论来分析掺杂电子的铁素体,特别是Ba(Fe_(1-x )Co_x)_2As_2家庭。评估电阻率,热功率和霍尔常数的温度和掺杂依赖性。我们表明,在假设“边际”(即提供非费米液体状自旋涨落)的情况下,可以在同一框架内一致地描述它们从实验中出现的异常行为,但是,带间耦合非常强。我们还表明,实验观察到的大热功率是由于不对称的能量依赖性准粒子弛豫速率和两个谱带的半金属特性所致。

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