Magneto-transport Effects in Topological Insulator BiSe Nanoribbons
arXiv:1003.6099
Abstract
Magneto-resistance (MR) of BiSe nanoribbons is studied over a broad range of temperature (=300K-2K) and under various magnetic field () orientations. The MR is strongly anisotropic with the perpendicular MR much larger than the longitudinal and transverse MRs. The perpendicular MR exhibits quadratic -dependence in low fields and becomes linear at high . However, when increases, the perpendicular MR becomes linear over the whole magnetic field range (0-9T) up to room temperature. This unusual linear MR is discussed in the context of the linear quantum MR of the topological surface-states. We also observe the boundary-scattering effect in MR at low temperatures, which indicates that the out-of-plane Fermi momentum is much smaller the in-plane Fermi momentum, excluding the simple three-dimensional Fermi surface picture.
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