Institute of Nanotechnology, Karlsruhe Institute of Technology, D-76021 Karlsruhe, Germany.
A.F. Ioffe Physico-Technical Institute, 194021 St. Petersburg, Russia.
Phys Rev Lett. 2018 Dec 21;121(25):257703. doi: 10.1103/PhysRevLett.121.257703.
We report a study of one-dimensional subband splitting in a bilayer graphene quantum point contact in which quantized conductance in steps of 4e^{2}/h is clearly defined down to the lowest subband. While our source-drain bias spectroscopy measurements reveal an unconventional confinement, we observe a full lifting of the valley degeneracy at high magnetic fields perpendicular to the bilayer graphene plane for the first two lowest subbands where confinement and Coulomb interactions are the strongest and a peculiar merging or mixing of K and K^{'} valleys from two nonadjacent subbands with indices (N,N+2), which are well described by our semiphenomenological model.
我们报告了在双层石墨烯量子点接触中一维子带分裂的研究,其中量化的电导呈现出清晰的 4e^{2}/h 台阶,直至最低子带。虽然我们的源漏偏压光谱测量揭示了一种非常规的限制,但我们在最强的前两个最低子带中观察到了在垂直于双层石墨烯平面的强磁场下完全消除谷简并,以及来自两个非相邻子带(N,N+2)的 K 和 K^{'}谷的奇特合并或混合,这在我们的半唯象模型中得到了很好的描述。