Lorke A, Luyken R J, Govorov A O, Kotthaus J P, Garcia J M, Petroff P M
Sektion Physik und CeNS, LMU Munchen, Geschwister-Scholl-Platz 1, 80539 Munchen, Germany.
Phys Rev Lett. 2000 Mar 6;84(10):2223-6. doi: 10.1103/PhysRevLett.84.2223.
Making use of self-assembly techniques, we realize nanoscopic semiconductor quantum rings in which the electronic states are in the true quantum limit. We employ two complementary spectroscopic techniques to investigate both the ground states and the excitations of these rings. Applying a magnetic field perpendicular to the plane of the rings, we find that, when approximately one flux quantum threads the interior of each ring, a change in the ground state from angular momentum l = 0 to l = -1 takes place. This ground state transition is revealed both by a drastic modification of the excitation spectrum and by a change in the magnetic-field dispersion of the single-electron charging energy.
利用自组装技术,我们实现了电子态处于真正量子极限的纳米半导体量子环。我们采用两种互补的光谱技术来研究这些量子环的基态和激发态。施加垂直于量子环平面的磁场时,我们发现,当每个量子环内部大约穿过一个磁通量子时,基态会发生从角动量l = 0到l = -1的变化。这种基态转变通过激发光谱的剧烈变化和单电子充电能量的磁场色散变化得以揭示。