论文标题
奇怪金属大厅电阻率的能源尺度竞争
Energy-scale competition in the Hall resistivity of a strange metal
论文作者
论文摘要
异常的运输行为 - 纵向和霍尔 - 是高-TC蛋白酶的奇怪金属状态的定义特征。由于能量尺度的竞争,在奇怪的金属现象学中可以理解电阻率的温度,频率和磁场依赖性,从而设定了非弹性松弛率。但是,霍尔系数的异常温度依赖性与这种现象学不符。在这里,我们报告了在广泛的磁场和温度范围内的奇怪金属状态下大厅电阻率的测量。在非常高的磁场处观察到的场和温度依赖的霍尔电阻率揭示了由能量尺度竞争控制的独特的高场面。这扩展了铜土中的奇怪金属现象学,以包括大厅的电阻率,特别是表明磁场对量子波动的松弛动力学的直接影响至少是奇怪金属状态的异常霍尔电阻的部分原因。
Anomalous transport behavior -- both longitudinal and Hall -- is the defining characteristic of the strange-metal state of High-Tc cuprates. The temperature, frequency, and magnetic field dependence of the resistivity is understood within strange metal phenomenology as resulting from energy-scale competition to set the inelastic relaxation rate. The anomalously strong temperature dependence of the Hall coefficient, however, is at odds with this phenomenology. Here we report measurements of the Hall resistivity in the strange metal state of cuprates over a broad range of magnetic fields and temperatures. The observed field and temperature dependent Hall resistivity at very high magnetic fields reveals a distinct high-field regime which is controlled by energy-scale competition. This extends the strange metal phenomenology in the cuprates to include the Hall resistivity and suggests, in particular, that the direct effect of magnetic field on the relaxation dynamics of quantum fluctuations may be at least partially responsible for the anomalous Hall resistivity of the strange metal state.