Kavli Institute of Nanoscience, Delft, The Netherlands.
Nano Lett. 2010 May 12;10(5):1817-22. doi: 10.1021/nl100520r.
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electric field tuned by two independent voltages. First, we control tunneling events through an applied electric field along the nanowire growth direction. Second, we modify the chemical potential in the nanowire with a back-gate. We combine these two field-effects to isolate a single electron and independently tune the tunnel coupling of the quantum dot with the contacts. Such charge control is a first requirement for opto-electrical single electron spin experiments on a nanowire quantum dot.
我们报告了一个电荷可调的单纳米线量子点的光学实验,该量子点受到由两个独立电压调节的电场的影响。首先,我们通过沿纳米线生长方向施加的电场控制隧道事件。其次,我们使用背栅来改变纳米线中的化学势。我们将这两种场效应结合起来,隔离出单个电子,并独立调节量子点与接触点的隧道耦合。这种电荷控制是在纳米线量子点上进行光电单电子自旋实验的首要要求。