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An Accurate Single-Electron Pump Based on a Highly Tunable Silicon Quantum Dot

机译:基于高度可调的硅量子点的精密单电子泵

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Nanoscale single-electron pumps can be used to generate accurate currents, and can potentially serve to realize a new standard of electrical current based on elementary charge. Here, we use a silicon-based quantum dot with tunable tunnel barriers as an accurate source of quantized current. The charge transfer accuracy of our pump can be dramatically enhanced by controlling the electrostatic confinement of the dot using purposely engineered gate electrodes. Improvements in the operational robustness, as well as suppression of nonadiabatic transitions that reduce pumping accuracy, are achieved via small adjustments of the gate voltages. We can produce an output current in excess of 80 pA with experimentally determined relative uncertainty below 50 parts per million
机译:纳米级单电子泵可用于产生准确的电流,并有可能用于实现基于基本电荷的新电流标准。在这里,我们使用具有可调隧道势垒的硅基量子点作为量化电流的精确来源。通过使用专门设计的栅电极控制点的静电限制,可以大大提高我们泵的电荷转移精度。通过对栅极电压进行很小的调整,可以提高操作鲁棒性,并抑制降低泵浦精度的非绝热转变。我们可以产生超过80 pA的输出电流,并且通过实验确定的相对不确定度低于百万分之50

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