超导电性
凝聚态物理
相(物质)
量子相变
量子临界点
量子
铁电性
相变
材料科学
连贯性(哲学赌博策略)
相干长度
宏观量子现象
电阻率和电导率
物理
量子力学
光电子学
电介质
作者
S. K. Halder,Mona Garg,Shreekant Gawande,Nikhlesh Singh Mehta,Anamika Kumari,Suvankar Chakraverty,Sanjeev Kumar,Goutam Sheet
标识
DOI:10.1021/acsaelm.3c00624
摘要
The mechanism through which superconductivity is destroyed upon controlled disordering often holds the key to understanding the mechanism of the emergence of superconductivity. Here, we demonstrate an in-situ mechanism to control the fraction of disorder in a 2D superconductor. By controlling an electric field VG, we created an assembly of segregated superconducting nano-islands and varied the interisland distance to accomplish a quantum phase transition from a superconducting phase to a strange quantum anomalous metallic (QAM) phase at LaVO3/SrTiO3 interfaces. In the QAM phase, the resistivity dropped below a critical temperature (TCM) as if the system was approaching superconductivity and then saturated, indicating the destruction of global phase coherence and the emergence of a phase where metal-like transport of Bosons (a Bose metal) becomes a possibility. The unprecedented control over the island size is obtained through the control of nanometer-scale ferroelectric domains formed in the SrTiO3 side of the interface due to a low-temperature structural phase transition.
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