论文标题

二维NBN超导薄膜中的量子相变

Quantum phase transition in two-dimensional NbN superconducting thin films

论文作者

Jing, Tian-Yu, Han, Zi-Yan, He, Zhi-Hao, Shao, Ming-Xin, Li, Peng, Li, Zhi-Qing

论文摘要

我们系统地研究了一系列厚度$ t $从$ \ sim $ 2.0到$ \ sim $ 4.0 nm的一系列NBN外延膜的低温运输特性。这些薄膜经历了膜厚度降低的超导体 - 绝缘体过渡(SIT),并且SIT的临界板电阻接近Cooper Pairs Pairs $ H/4E^2 $(6.45 K $ω$)的量子电阻。除了Berezinski-koterlitz-thou thou thou thou thou thou thou thou thou thouless驱动的SIT(2D)超导膜(2.6 nm $ \ lyssim t \ Lessim t \ Lessim 4.0 $ nm),还观察到了磁场驱动的位置。有趣的是,发现低温的磁化等温线不会在单个固定点上跨越,而是在这些超导膜的区分区域差的区域。通过分析这些磁化等温线获得的动态临界指数是不同的,因为即将接近量子临界点。动态临界指数的行为源自在超高温度下淬火障碍,为膜的量子相变过程中的量子griffiths奇异性提供了直接证据。这些电影中未出现野外驱动的异常金属(量子金属)状态。我们的结果表明,量子格里菲斯奇异性不仅发生在具有超导体金属过渡的高度结晶的2D超导体中,而且还出现在具有SIT的那些中。

We systematically investigated the low-temperature transport properties of a series of NbN epitaxial films with thickness $t$ ranging from $\sim$2.0 to $\sim$4.0 nm. The films undergo a superconductor-insulator transition (SIT) with decreasing film thickness, and the critical sheet resistance for the SIT is close to the quantum resistance of Cooper pairs $h/4e^2$ (6.45 k$Ω$). Besides the Berezinski-Koterlitz-Thouless transition, a magnetic-field-driven SIT is observed in those two-dimensional (2D) superconducting films (2.6 nm $\lesssim t \lesssim 4.0$ nm). Interestingly, it is found that the low-temperature magnetoresistance isotherms do not cross at a single fixed point but at a well-distinguished region for these superconducting films. The dynamical critical exponent obtained by analyzing these magnetoresistance isotherms is divergent as the quantum critical point is being approached. The behavior of the dynamical critical exponent, originating from quenched disorder at ultralow temperatures, provides direct evidence for the occurrence of quantum Griffiths singularity in the quantum phase transition process of the films. The field-driven anomalous metal (quantum metal) state does not appear in these films. Our results suggest that the quantum Griffiths singularity not only occurs in the highly crystalline 2D superconductors with superconductor-metal transition but also in those with SIT.

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