Centre de Physique Théorique, Ecole Polytechnique, CNRS, 91128 Palaiseau Cedex, France.
Phys Rev Lett. 2013 Feb 22;110(8):086401. doi: 10.1103/PhysRevLett.110.086401. Epub 2013 Feb 19.
We investigate transport in strongly correlated metals. Within dynamical mean-field theory, we calculate the resistivity, thermopower, optical conductivity and thermodynamic properties of a hole-doped Mott insulator. Two well-separated temperature scales are identified: T(FL) below which Landau Fermi liquid behavior applies, and T(MIR) above which the resistivity exceeds the Mott-Ioffe-Regel value and bad-metal behavior is found. We show that quasiparticle excitations remain well defined above T(FL) and dominate transport throughout the intermediate regime T(FL) </~ T </~ T(MIR). The lifetime of these resilient quasiparticles is longer for electronlike excitations and this pronounced particle-hole asymmetry has important consequences for the thermopower. The crossover into the bad-metal regime corresponds to the disappearance of these excitations and has clear signatures in optical spectroscopy.
我们研究强关联金属中的输运性质。在动态平均场理论中,我们计算了掺杂空穴的莫特绝缘体的电阻率、热功率、光学电导率和热力学性质。确定了两个明显分离的温度尺度:T(FL)以下,适用于朗道费米液体行为;T(MIR)以上,电阻率超过莫特-伊奥夫-雷尔(Mott-Ioffe-Regel)值,出现不良金属行为。我们表明,准粒子激发在 T(FL)以上仍然清晰可辨,并主导整个中间区间 T(FL) </~ T </~ T(MIR)的输运过程。对于类电子激发,这些有弹性的准粒子的寿命更长,这种明显的粒子-空穴不对称性对热功率有重要影响。向不良金属区的转变对应于这些激发的消失,并在光学光谱中具有明显的特征。