凝聚态物理
超导电性
电阻率和电导率
高温超导
量子临界点
物理
相图
配对
兴奋剂
转变温度
材料科学
相(物质)
量子相变
相变
量子力学
作者
Rachel Cooper,Yangming Wang,Baptiste Vignolle,O. J. Lipscombe,S. M. Hayden,Yoichi Tanabe,Tadashi Adachi,Y. Koike,M. Nohara,H. Takagi,Cyril Proust,N. E. Hussey
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2008-12-13
卷期号:323 (5914): 603-607
被引量:445
标识
DOI:10.1126/science.1165015
摘要
The presence or absence of a quantum critical point and its location in the phase diagram of high-temperature superconductors have been subjects of intense scrutiny. Clear evidence for quantum criticality, particularly in the transport properties, has proved elusive because the important low-temperature region is masked by the onset of superconductivity. We present measurements of the low-temperature in-plane resistivity of several highly doped La 2– x Sr x CuO 4 single crystals in which the superconductivity had been stripped away by using high magnetic fields. In contrast to other quantum critical systems, the resistivity varies linearly with temperature over a wide doping range with a gradient that scales monotonically with the superconducting transition temperature. It is maximal at a critical doping level ( p c ) ∼ 0.19 at which superconductivity is most robust. Moreover, its value at p c corresponds to the onset of quasi-particle incoherence along specific momentum directions, implying that the interaction that first promotes high-temperature superconductivity may ultimately destroy the very quasi-particle states involved in the superconducting pairing.
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