论文标题
零平均偏置双向单电子电流在混合旋转门中
Zero-average bias bidirectional single-electron current generation in a hybrid turnstile
论文作者
论文摘要
事实证明,混合旋转栅门可以生成准确的单电子电流。通常的操作包括将定期调制应用于电容耦合的栅极电极,并需要非零的直流源源偏置电压。在此操作下,可以通过翻转偏置的极性来产生相同大小和相反方向的电流。在这里,我们证明可以在零平均偏置电压下生成准确的单电子电流。我们通过应用额外的周期性调制,并将元素信号的频率和零直流电位的零DC级别应用于源电极来实现这一目标。这会在隧道阈值的交叉点之间创建一个时间间隔,否则为零。此外,我们表明在此操作中,当前方向只能通过移动源信号的相位来逆转。
Hybrid turnstiles have proven to generate accurate single-electron currents. The usual operation consists of applying a periodic modulation to a capacitively coupled gate electrode and requires a non-zero DC source-drain bias voltage. Under this operation, a current of the same magnitude and opposite direction can be generated by flipping the polarity of the bias. Here, we demonstrate that accurate single-electron currents can be generated under zero average bias voltage. We achieve this by applying an extra periodic modulation with twice the frequency of the gate signal and zero DC level to the source electrode. This creates a time interval, which is otherwise zero, between the crossings of tunnelling thresholds that enable single-electron tunnelling. Furthermore, we show that within this operation the current direction can be reversed by only shifting the phase of the source signal.