Novel Emergent Phases in a Two-Dimensional Superconductor

Simrandeep Kaur, Hemanta Kumar Kundu, Sumit Kumar, A. Dogra, R. Narayanan, T. Vojta, A. Bid
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Abstract

In this letter, we report our observation of an extraordinarily rich phase diagram of a LaScO$_3$/SrTiO$_3$ heterostructure. Close to the superconducting transition temperature, the system hosts a superconducting critical point of the Infinite-randomness type characterized by an effective dynamical exponent $\nu z$ that diverges logarithmically. At lower temperatures, we find the emergence of a magnetic field-tuned metallic phase that co-exists with a quantum Griffiths phase (QGP). Our study reveals a previously unobserved phenomenon in 2D superconductors -- an unanticipated suppression of the QGP below a crossover temperature in this system. This concealment is accompanied by the destruction of the superconducting quantum critical point signaled by a power-law divergence (in temperature) of the effective dynamical exponent. These observations are entirely at odds with the predictions of the infinite-randomness scenario and challenge the very concept of a vanishing energy scale associated with a quantum critical point. We develop and discuss possible scenarios like smearing of the phase transition that could plausibly explain our observations. Our findings challenge the notion that QGP is the ultimate ground state in two-dimensional superconductors.
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二维超导体中的新出现物相
在这封信中,我们报告了在 LaScO$_3$/SrTiO$_3$ 异质结构中观察到的异常丰富的相图。在接近超导转变温度时,该系统存在一个无限随机型超导临界点,其特征是有效动态指数 $\nu z$ 按对数发散。在较低温度下,我们发现出现了一个与量子格里菲斯相(QGP)共存的磁场调谐金属相。我们的研究揭示了此前在二维超导体中未观察到的现象--在该系统中,量子格里菲斯相在低于交叉温度时受到了意想不到的抑制。这种抑制伴随着超导量子临界点的破坏,其信号是有效动力学指数(温度)的幂律发散。这些观察结果与无限随机性方案的预测完全不符,并对与量子临界点相关的消失能级这一概念本身提出了挑战。我们提出并讨论了相变涂抹等可能的情形,这些情形可以合理地解释我们的观测结果。我们的发现对 QGP 是二维超导体的终极基态这一概念提出了挑战。
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