论文标题
使用COULOMB筛选,在魔法角扭曲双层石墨烯中调整电子相关性
Tuning electron correlation in magic-angle twisted bilayer graphene using Coulomb screening
论文作者
论文摘要
控制相互作用强度的能力对于研究从相关的费米体系统中出现的量子现象至关重要。例如,同位素效应说明了电子 - 音波耦合对超导性的影响,从而为BCS理论提供了重要的实验支持。在这项工作中,我们报告了一种新的设备几何形状,其中将魔角扭曲的双层石墨烯(TBLG)靠近靠近Bernal双层石墨烯(BLG),该石墨烯(BLG)被3 nm厚的屏障隔开。使用来自Bernal双层的电荷筛选,可以连续调节扭曲双层中电子库仑相互作用的强度。运输测量表明,调整库仑筛选对绝缘和超导状态的影响相反:随着库仑相互作用通过筛选而削弱,绝缘状态变得不强大,而超导性的稳定性得到了增强。结果表明,能够直接探测库仑相互作用在魔法扭曲的双层石墨烯中的作用。最重要的是,库仑筛选的效果指向电子 - 波耦合作为库珀对形成的主要机制,因此是超导性的,在魔法角扭曲的双层石墨烯中。
The ability to control the strength of interaction is essential for studying quantum phenomena emerging from a system of correlated fermions. For example, the isotope effect illustrates the effect of electron-phonon coupling on superconductivity, providing an important experimental support for the BCS theory. In this work, we report a new device geometry where the magic-angle twisted bilayer graphene (tBLG) is placed in close proximity to a Bernal bilayer graphene (BLG) separated by a 3 nm thick barrier. Using charge screening from the Bernal bilayer, the strength of electron-electron Coulomb interaction within the twisted bilayer can be continuously tuned. Transport measurements show that tuning Coulomb screening has opposite effect on the insulating and superconducting states: as Coulomb interaction is weakened by screening, the insulating states become less robust, whereas the stability of superconductivity is enhanced. Out results demonstrate the ability to directly probe the role of Coulomb interaction in magic-angle twisted bilayer graphene. Most importantly, the effect of Coulomb screening points toward electron-phonon coupling as the dominant mechanism for Cooper pair formation, and therefore superconductivity, in magic-angle twisted bilayer graphene.