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首页> 外文期刊>Physical Review, B. Condensed Matter >Electronic crossover in the highly anisotropic normal state of Sr2RuO4 from pressure effects on electrical resistivity
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Electronic crossover in the highly anisotropic normal state of Sr2RuO4 from pressure effects on electrical resistivity

机译:从压力效应对电阻率的压力效应的高极常态正常状态的电子交叉

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摘要

We investigated pressure dependence of the electrical resistivity of the only copper-free layered-perovskite superconductor Sr2RuO4 The characteristic temperature T-M, where the out-of-plane resistivity rho(c) changes from metallic behavior to nonmetallic behavior with increasing temperature, increases with hydrostatic pressure. In contrast, the absolute value of rho(c) at T-M is almost independent of pressure. Such a change over in rho(c) is ascribable to the crossover from the diffusion process of quasiparticles between the adjacent layers to the thermally assisted hopping process. The pressure effects on rho(c) are possibly characterized by the enhanced transfer integral along the c axis by pressure. On the other hand, in the temperature dependence of the in-plane resistivity, we observed an intriguing hump that appears at low T less than T-M in the pressure range from 1.5 to 5 GPa, and vanishes on applying higher pressure. This behavior may be comprehensible from the view of the two-dimensional ferromagnetic spin fluctuations enhanced by pressure. [S0163-1829(98)04246-5]. [References: 28]
机译:我们调查了唯一无铜层间钙钛矿超导体Sr2RuO4的电阻率的压力依赖性特征温度Tm,其中,面外电阻率rho(c)从金属行为变化与温度升高的非金属行为,随着静水增加而增加压力。相反,T-M处ROO(C)的绝对值几乎与压力无关。在rhO(c)中的这种变化依赖于与相邻层之间的Quasipartics的扩散过程易易到热辅助跳跃过程。 rho(c)的压力效应可能是通过压力沿C轴积分的增强的转移来表征。另一方面,在面内电阻率的温度依赖性中,我们观察到在低于1.5至5GPa的压力范围内低于T-m的低T出现的有趣驼峰,并在施加更高的压力方面消失。从压力增强的二维铁磁旋转波动的视图,可以可以易于理解这种行为。 [S0163-1829(98)04246-5]。 [参考:28]

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