论文标题
用普兰克电阻率和特定热量的库酸酯超导体的光导率调整缩放率
Reconciling scaling of the optical conductivity of cuprate superconductors with Planckian resistivity and specific heat
论文作者
论文摘要
调谐到量子临界点的材料显示通用缩放属性作为温度$ t $和频率$ω$的函数。与$ t $ - 线性的电阻率依赖性和光学散射率的$ t $ - 线性依赖性相比,有关铜酸盐超导体的长期难题是光导率的幂律依赖性,指数小于一个。在这里,我们介绍并分析了LA $ _ {2-X} $ sr $ _x $ cuo $ _4 $的电阻率和光电率,$ x = 0.24 $。我们演示了$ \hbarΩ/k _ {\ mathrm {b}} t $在频率和温度范围内的光学数据缩放,$ t $ - 线性电阻率以及与$ \ sim \ sim \ ln t $合成以前的先前特定热实验的成比例的质量。我们表明,用于非弹性散射速率的$ t,ω$ - 线性缩放率会导致对实验数据的统一理论描述,包括光导率的幂律。这个理论框架为描述量子关键问题的独特属性提供了新的机会。
Materials tuned to a quantum critical point display universal scaling properties as a function of temperature $T$ and frequency $ω$. A long-standing puzzle regarding cuprate superconductors has been the observed power-law dependence of optical conductivity with an exponent smaller than one, in contrast to $T$-linear dependence of the resistivity and $ω$-linear dependence of the optical scattering rate. Here, we present and analyze resistivity and optical conductivity of La$_{2-x}$Sr$_x$CuO$_4$ with $x=0.24$. We demonstrate $\hbarω/k_{\mathrm{B}} T$ scaling of the optical data over a wide range of frequency and temperature, $T$-linear resistivity, and optical effective mass proportional to $\sim \ln T$ corroborating previous specific heat experiments. We show that a $T,ω$-linear scaling Ansatz for the inelastic scattering rate leads to a unified theoretical description of the experimental data, including the power-law of the optical conductivity. This theoretical framework provides new opportunities for describing the unique properties of quantum critical matter.