Department of Physics, Harvard University, Cambridge, Massachusetts 02138, USA.
Phys Rev Lett. 2013 Aug 16;111(7):076802. doi: 10.1103/PhysRevLett.111.076802.
Graphene and its multilayers have attracted considerable interest because their fourfold spin and valley degeneracy enables a rich variety of broken-symmetry states arising from electron-electron interactions, and raises the prospect of controlled phase transitions among them. Here we report local electronic compressibility measurements of ultraclean suspended graphene that reveal a multitude of fractional quantum Hall states surrounding filling factors ν=-1/2 and -1/4. Several of these states exhibit phase transitions that indicate abrupt changes in the underlying order, and we observe many additional oscillations in compressibility as ν approaches -1/2, suggesting further changes in spin and/or valley polarization. We use a simple model based on crossing Landau levels of composite fermions with different internal degrees of freedom to explain many qualitative features of the experimental data. Our results add to the diverse array of many-body states observed in graphene and demonstrate substantial control over their order parameters.
石墨烯及其多层结构引起了相当大的兴趣,因为它们的四重自旋和谷简并允许电子-电子相互作用产生丰富多样的破对称态,并提高了它们之间受控相变的可能性。在这里,我们报告了超洁净悬浮石墨烯的局部电子压缩率测量结果,这些结果揭示了围绕填充因子 ν=-1/2 和 -1/4 的多种分数量子霍尔态。这些状态中的几个表现出相变,表明底层顺序发生了突然变化,并且当 ν接近-1/2 时,我们观察到压缩率的许多额外振荡,这表明自旋和/或谷极化发生了进一步变化。我们使用基于具有不同内部自由度的复合费米子交叉 Landau 能级的简单模型来解释实验数据的许多定性特征。我们的结果增加了在石墨烯中观察到的多种多体态的多样性,并证明对其序参量有很大的控制。