论文标题
通过大黄金辅助隧道破坏库仑封锁
Breaking of Coulomb blockade by macrospin-assisted tunneling
论文作者
论文摘要
具有进攻磁化的磁铁将旋转电流泵入相邻的导线。作为这种自旋泵的特殊情况,进攻型宏生(磁化)可以帮助电子进行隧穿。但是,在小型系统中,库仑阻滞效应可以阻止电子的传输。在这里,我们调查了麦克罗斯金辅助的隧道和库仑封锁之间的竞争,以使两种效果都满足的最简单系统。也就是说,对于带有预磁化的正常金属和金属铁磁磁铁之间的单个隧道连接。通过将费米的黄金法则与磁化动力学和充电效应相结合,我们表明,宏种辅助的隧道可以软化甚至破坏库仑的封锁。这些效果的细节 - 库仑封锁的软化和破裂 - 取决于宏生动力学。例如,这允许通过系统的电流 - 电压特性来测量Macrospin动力学。它还允许电气控制旋转电流。从一般的角度来看,我们的结果为介质量表上的旋转基质和电子学之间的相互作用提供了一个平台。我们希望我们的工作为研究更复杂的自旋系统中的库仑封锁提供基础。
A magnet with precessing magnetization pumps a spin current into adjacent leads. As a special case of this spin pumping, a precessing macrospin (magnetization) can assist electrons in tunneling. In small systems, however, the Coulomb blockade effect can block the transport of electrons. Here, we investigate the competition between macrospin-assisted tunneling and Coulomb blockade for the simplest system where both effects meet; namely, for a single tunnel junction between a normal metal and a metallic ferromagnet with precessing magnetization. By combining Fermi's golden rule with magnetization dynamics and charging effects, we show that the macrospin-assisted tunneling can soften or even break the Coulomb blockade. The details of these effects -- softening and breaking of Coulomb blockade -- depend on the macrospin dynamics. This allows, for example, to measure the macrospin dynamics via a system's current-voltage characteristics. It also allows to control a spin current electrically. From a general perspective, our results provide a platform for the interplay between spintronics and electronics on the mesoscopic scale. We expect our work to provide a basis for the study of Coulomb blockade in more complicated spintronic systems.