Department of Physics, Columbia University, New York, New York 10027, USA.
Phys Rev Lett. 2010 Feb 12;104(6):066801. doi: 10.1103/PhysRevLett.104.066801. Epub 2010 Feb 8.
The quantum Hall effect near the charge neutrality point in bilayer graphene is investigated in high magnetic fields of up to 35 T using electronic transport measurements. In the high-field regime, the eightfold degeneracy in the zero-energy Landau level is completely lifted, exhibiting new quantum Hall states corresponding to filling factors nu=0, 1, 2, and 3. Measurements of the activation energy gaps for the nu=2 and 3 filling factors in tilted magnetic fields exhibit no appreciable dependence on the in-plane magnetic field, suggesting that these Landau level splittings are independent of spin. In addition, measurements taken at the nu=0 charge neutral point show that, similar to single layer graphene, the bilayer becomes insulating at high fields.
采用电子输运测量方法,在高达 35T 的高磁场中研究了双层石墨烯中接近电中性点的量子霍尔效应。在高场区域,零能朗道能级的八重简并完全消除,出现了新的量子霍尔态,对应填充因子 nu=0、1、2 和 3。在倾斜磁场中测量填充因子 nu=2 和 3 的激活能隙时,发现它们与平面内磁场没有明显的依赖关系,这表明这些朗道能级分裂与自旋无关。此外,在填充因子 nu=0 的电荷中性点处的测量表明,与单层石墨烯类似,双层石墨烯在高场下变为绝缘。