论文标题
在偏见的双层石墨烯中,在异种序列发作时自旋三键超导性
Spin-triplet superconductivity at the onset of isospin order in biased bilayer graphene
论文作者
论文摘要
随着Moiré石墨烯的出现,由电子而不是声子吸引力之间的库仑排斥而不是声子吸引力控制了非常规的超导性。最初,描绘了基于库仑的配对机制和库仑 - 抑制的配对机制已被证明是一项具有挑战性的任务,但是在最近在非扭曲的石墨烯双层和三层型中发现超导性后情况发生了变化。在自旋和山谷极化顺序的相边界处发生的超导性要求非phonon场景,但特定的配对机制仍有待理解。在这里,我们分析了一个引人注目的例子 - 在磁场引起的山谷偏振顺序发作时发生的石墨烯双层的超导性。我们描述了一种通过量子 - 关键模式介导的介导的型渗透机制的吸引力,该机制完全解释了观察到的现象学。虽然通常很难从观察到的超导阶段来推断配对机制,但这种情况是一个罕见的例外,从而可以对配对胶的起源进行相当明确的识别。诸如在Isospin极化阶段开始时超导阶段位置的因素组合,磁场中的阈值在上面发生了超导性,并且其在高磁场上的弹性描绘了由量子临界波动驱动的三胞胎超导性的清晰图片。
The quest for unconventional superconductivity governed by Coulomb repulsion between electrons rather than phonon attraction received new momentum with the advent of moiré graphene. Initially, delineating the phonon and Coulomb-repulsion-based pairing mechanisms has proven to be a challenging task, however the situation has changed after recent discovery of superconductivity in non-twisted graphene bilayers and trilayers. Superconductivity occurring at the phase boundaries of spin and valley polarized orders calls for non-phonon scenarios, yet the specific pairing mechanisms remain to be understood. Here we analyze a striking example -- superconductivity in graphene bilayers occurring at the onset of valley-polarized order induced by a magnetic field. We describe an attraction-from-repulsion mechanism for pairing mediated by a quantum-critical mode, which fully explains the observed phenomenology. While it is usually notoriously difficult to infer the pairing mechanism from the observed superconducting phases, this case presents a rare exception, allowing for a fairly unambiguous identification of the origin of the pairing glue. A combination of factors such as the location of superconducting phase at the onset of isospin-polarized phase, a threshold in a magnetic field, above which superconductivity occurs, and its resilience at high magnetic fields paints a clear picture of a triplet superconductivity driven by quantum-critical fluctuations.