Xu Xiaofeng, Jiao W H, Zhou N, Guo Y, Li Y K, Dai Jianhui, Lin Z Q, Liu Y J, Zhu Zengwei, Lu Xin, Yuan H Q, Cao Guanghan
Department of Physics and Hangzhou Key Laboratory of Quantum Matters, Hangzhou Normal University, Hangzhou 310036, People's Republic of China.
J Phys Condens Matter. 2015 Aug 26;27(33):335701. doi: 10.1088/0953-8984/27/33/335701. Epub 2015 Jul 29.
We report on the quasi-linear in field intrachain magnetoresistance in the normal state of a quasi-one-dimensional superconductor Ta4Pd3Te16 (Tc ~ 4.6 K). Both the longitudinal and transverse in-chain magnetoresistance shows a power-law dependence, Δρ∝B(α) with the exponent α close to 1 over a wide temperature and field range. The magnetoresistance shows no sign of saturation up to 50 T studied. The linear magnetoresistance observed in Ta4Pd3Te16 is found to be overall inconsistent with the interpretations based on the Dirac fermions in the quantum limit, charge conductivity fluctuations as well as quantum electron-electron interference. Moreover, it is observed that the Kohler's rule, regardless of the field orientations, is violated in its normal state. This result suggests the loss of charge carriers in the normal state of this chain-containing compound, due presumably to the charge-density-wave fluctuations.
我们报道了准一维超导体Ta4Pd3Te16(Tc~4.6K)正常态下的场致链内准线性磁电阻。纵向和横向链内磁电阻均呈现幂律依赖关系,即Δρ∝B(α),在较宽的温度和场强范围内,指数α接近1。在所研究的高达50T的磁场下,磁电阻没有饱和迹象。发现Ta4Pd3Te16中观测到的线性磁电阻总体上与基于量子极限下狄拉克费米子、电荷电导率涨落以及量子电子-电子干涉的解释不一致。此外,观察到无论场的取向如何,该化合物在正常态下都违反了科勒规则。这一结果表明,在这种含链化合物的正常态下,电荷载流子可能由于电荷密度波涨落而损失。