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arxiv: 1010.0833 · v1 · pith:PCKTR7KQnew · submitted 2010-10-05 · ❄️ cond-mat.supr-con

Universal scaling of c-axis dc conductivity for the underdoped hightemperature cuprate superconductors

classification ❄️ cond-mat.supr-con
keywords sigmaunderdopedc-axiscupratedopinghightemperaturehtcsintrinsic
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Coexistence of the "metallic-like" in-plane and the "semiconducting-like" out-of-plane (caxis) dc conductivities ({\sigma}c), generating a huge anisotropy in the underdoped hightemperature cuprate superconductors (HTCS), defies our current understanding of metal. In this report we present an intrinsic doping dependence of {\sigma}c. We find that the {\sigma}c for the underdoped HTCS is universally scaled to the {\sigma}c at the optimal doped-hole concentration. The universal scaling behavior suggests that there are three intrinsic processes contribute to {\sigma}c: (i) the doping-dependent-activated gap; (ii) the exponential doping dependences and (iii) the tunneling between adjacent CuO2 block layers. They are the essential underlying characteristics of the c-axis transport for all HTCSs.

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