论文标题
切换谷的过滤电流方向在多末端石墨烯系统中
Switching valley filtered current directions in multi-terminal graphene systems
论文作者
论文摘要
山谷过滤过程已经在不同的基于石墨烯的配置和方案中探索,以控制传输响应。在这里,我们提出了适当设计的石墨烯多末端设置,以便在控制方向的可能性外,还可以在广泛的能量中获得山谷过滤的电流。我们探索具有扩展机械折叠变形的石墨烯系统,作为增强山谷过滤传输的机会。由于磁场和应变引起的电子限制效应之间的混合会导致量子大厅机制中电流成分的选择性驱动。我们在绿色的功能形式主义中采用模式匹配方法,从而直接分析每个山谷传输的应变效应。我们估计了以磁性,变形和设置长度为特征的禁闭参数的阈值图,以优化山谷滤波器的传输过程以及山谷偏振电流方向的正确开关。
Valley filtering processes have been explored in different graphene-based configurations and scenarios to control transport responses. Here we propose graphene multi-terminal set-ups properly designed to obtain valley filtered currents in a broad range of energy, besides the possibility of controlling their directions. We explore graphene systems with extended mechanical fold-like deformations as an opportunity to enhance valley filtered transmission. The mixing between the electronic confinement effects due to a magnetic field and strain results in a selective drive of the current components in the quantum Hall regime. We adopt the mode-matching method within the Green's function formalism, allowing the direct analysis of the strain effect on each valley transmission. We estimate a threshold map of confinement parameters, characterized by the magnetic, deformation, and set-up lengths, to optimize valley filter transport processes and the proper switch of the valley polarized current directions.