RIKEN Advanced Science Institute, RIKEN, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.
Phys Rev Lett. 2013 Jan 4;110(1):016803. doi: 10.1103/PhysRevLett.110.016803. Epub 2013 Jan 2.
We investigate two- and three-electron spin blockade in three vertical quantum dots (QDs) coupled in series. Two-electron spin blockade is found in a region where sequential tunneling through all QDs is forbidden but tunneling involving virtual hopping through an empty QD is allowed. It is observed only for the hole cycle with a distinct bias threshold for access to the triplet state. Three-electron spin blockade involving the quadruplet state is observed for nonequibilium conditions where sequential tunneling is allowed and the triplet state is accessible. Our results shine light on the importance of the nonequibilium conditions to obtain sufficient population of triplet and quadruplet states necessary for spin blockade.
我们研究了串联的三个垂直量子点(QD)中的双电子和三电子自旋阻塞。在所有 QD 顺序隧穿被禁止但涉及通过空 QD 的虚拟跃迁的隧穿被允许的区域中发现了双电子自旋阻塞。仅对于空穴循环观察到这种情况,因为存在进入三重态的明显偏置阈值。对于允许顺序隧穿并且三重态可及的非平衡条件,观察到涉及四重态的三电子自旋阻塞。我们的结果表明,非平衡条件对于获得必要的三重态和四重态的足够布居以实现自旋阻塞的重要性。