相图
凝聚态物理
物理
超导电性
铜酸盐
兴奋剂
光导率
相(物质)
材料科学
量子力学
作者
Erik van Heumen,Xuanbo Feng,Silvia Cassanelli,Linda B. Neubrand,Lennart de Jager,Maarten Berben,Y. K. Huang,Takeshi Kondo,Tsunehiro Takeuchi,Jan Zaanen
出处
期刊:Physical review
[American Physical Society]
日期:2022-08-22
卷期号:106 (5)
被引量:23
标识
DOI:10.1103/physrevb.106.054515
摘要
Unlocking the mystery of the strange metal state has become the focal point of high-Tc research, not because of its importance for superconductivity, but because it appears to represent a truly novel phase of matter dubbed "quantum supreme matter."Detected originally through high magnetic field, transport experiments, signatures of this phase have now been uncovered with a variety of probes. Our high resolution optical data of the low-Tc cuprate superconductor, Bi2-xPbxSr2-yLayCuO6+δ allows us to probe this phase over a large energy and temperature window. We demonstrate that the optical signatures of the strange metal phase persist throughout the phase diagram. The strange metal signatures in the optical conductivity are twofold: (i) a low energy Drude response with Drude width on the order of temperature and (ii) a high energy conformal tail with a doping dependent power-law exponent. While the Drude weight evolves monotonically throughout the entire doping range studied, the spectral weight contained in the high energy conformal tail appears to be doping and temperature independent. Our analysis further shows that the temperature dependence of the optical conductivity is completely determined by the Drude parameters. Our results indicate that there is no critical doping level inside the superconducting dome where the carrier density starts to change drastically and that the previously observed "return to normalcy"is a consequence of the increasing importance of the Drude component relative to the conformal tail with doping. Importantly, both the doping and temperature dependence of the resistivity are largely determined by the Drude width.
科研通智能强力驱动
Strongly Powered by AbleSci AI