Fujisawa T, Austing D G, Tokura Y, Hirayama Y, Tarucha S
NTT Basic Research Laboratories, NTT Corporation, 3-1 Morinosato-Wakamiya, Atsugi, 243-0198, Japan.
Phys Rev Lett. 2002 Jun 10;88(23):236802. doi: 10.1103/PhysRevLett.88.236802. Epub 2002 May 23.
We investigate nonequilibrium transport in the absence of spin-flip energy relaxation in a few-electron quantum dot artificial atom. Novel nonequilibrium tunneling processes involving high-spin states, which cannot be excited from the ground state because of spin blockade, and other processes involving more than two charge states are observed. These processes cannot be explained by orthodox Coulomb blockade theory. The absence of effective spin relaxation induces considerable fluctuation of the spin, charge, and total energy of the quantum dot. Although these features are revealed clearly by pulse excitation measurements, they are also observed in conventional dc current characteristics of quantum dots.
我们研究了少电子量子点人工原子中不存在自旋翻转能量弛豫情况下的非平衡输运。观察到了涉及高自旋态的新型非平衡隧穿过程,由于自旋阻塞,这些高自旋态无法从基态激发,还观察到了涉及两个以上电荷态的其他过程。这些过程无法用传统的库仑阻塞理论来解释。有效自旋弛豫的缺失会引起量子点的自旋、电荷和总能量的显著波动。尽管这些特征通过脉冲激发测量清晰地展现出来,但在量子点的传统直流电流特性中也能观察到。