论文标题
独特的量子金属状态在钛二氧化物杂氧化物杂音超导体中
Unique quantum metallic state in the titanium sesquioxide heterointerface superconductor
论文作者
论文摘要
量子金属状态的出现以零温度极限在各种二维超导体中以饱和有限的电阻为标志的出现为异质结构超导性领域注入了令人兴奋的动量。尽管在过去几十年中进行了许多研究工作,但这种意外量子金属的性质尚未达成共识。在这里,我们报告了在Bose-Metal的标志中观察到独特的量子金属状态。值得注意的是,二维超导率金属在附近连续调节的量子玻色粒金属状态在正常相位持续存在,表明即使在正常相位,也存在电子库珀对形成的复合玻色子。我们的发现为异互面超导体的正常阶段中的电子配对提供了一个独特的证据,并在异源界面超导率下的配对性质上发明了新的光。
The emergence of quantum metallic state marked by a saturating finite electrical resistance in the zero-temperature limit in a variety of two-dimensional superconductors injects an exciting momentum to the realm of heterostructure superconductivity. Despite much research efforts over last few decades, there is not yet a general consensus on the nature of this unexpected quantum metal. Here, we report the observation of a unique quantum metallic state within the hallmark of Bose-metal in the titanium sesquioxide heterointerface superconductor Ti$_2$O$_3$/GaN. Remarkably, the quantum bosonic metallic state continuously tuned by a magnetic field in the vicinity of the two-dimensional superconductivity-metal transition persists in the normal phase, indicating the existence of composite bosons formed by electron Cooper pairs even in the normal phase. Our findings provide a distinct evidence for electron pairing in the normal phase of heterointerface superconductors, and shed fresh light on the pairing nature underlying heterointerface superconductivity.