论文标题

石墨烯横向超晶格中的巨型棘轮磁电流

Giant ratchet magneto-photocurrent in graphene lateral superlattices

论文作者

Hubmann, S., Bel'kov, V. V., Golub, L. E., Kachorovskii, V. Yu., Drienovsky, M., Eroms, J., Weiss, D., Ganichev, S. D.

论文摘要

我们报告了石墨烯中磁量子棘轮效应的观察,并具有横向双晶格顶门(DGG)超晶格。我们表明,由于Shubnikov-de Haas效应,THZ棘轮电流表现出标志性的磁振荡。与零磁场处的棘轮效应相比,这些振荡的幅度大大增强。电流的方向由横向不对称确定,该不对称可以通过DGG中门电位的变化来控制。我们还研究了棘轮电流对Terahertz电场方向的依赖性(用于线性极化)和辐射螺旋度(用于圆极化)。值得注意的是,在后一种情况下,从右 - 圆圈辐射切换导致光电流方向的反转。我们证明,基于玻尔兹曼动力学方程的漂移扩散近似可以很好地拟合我们的大多数观察结果,并且在状态密度的振荡中完全编码了Landau量化。

We report on the observation of the magnetic quantum ratchet effect in graphene with a lateral dual-grating top gate (DGG) superlattice. We show that the THz ratchet current exhibits sign-alternating magneto-oscillations due to the Shubnikov-de Haas effect. The amplitude of these oscillations is greatly enhanced as compared to the ratchet effect at zero magnetic field. The direction of the current is determined by the lateral asymmetry which can be controlled by variation of gate potentials in DGG. We also study the dependence of the ratchet current on the orientation of the terahertz electric field (for linear polarization) and on the radiation helicity (for circular polarization). Notably, in the latter case, switching from right- to left-circularly polarized radiation results in an inversion of the photocurrent direction. We demonstrate that most of our observations can be well fitted by the drift-diffusion approximation based on the Boltzmann kinetic equation with the Landau quantization fully encoded in the oscillations of the density of states.

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