We report electron counting experiments in a silicon metal-oxide-semiconductor quantum dot architecture which has been previously demonstrated to generate a quantized current in excess of 80 pA with uncertainty below 30 parts per million. Single-shot detection of electrons pumped into a reservoir dot is performed using a capacitively coupled single-electron transistor. We extract the full probability distribution of the transfer of n electrons per pumping cycle for We find that the probabilities extracted from the counting experiment are in agreement with direct current measurements in a broad range of dc electrochemical potentials of the pump. The electron counting technique is also used to confirm the improving robustness of the pumping m...
Semiconductor-based quantum dot single-electron pumps are currently the most promising candidates fo...
Semiconductor-based quantum dot single-electron pumps are currently the most promising candidates fo...
Semiconductor-based quantum dot single-electron pumps are currently the most promising candidates fo...
We report electron counting experiments in a silicon metal-oxide-semiconductor quantum dot architect...
We report electron counting experiments in a silicon metal-oxide-semiconductor quantum dot architect...
Nanoscale single-electron pumps can be used to generate accurate currents, and can potentially serve...
Nanoscale single-electron pumps can be used to generate accurate currents, and can potentially serve...
Nanoscale single-electron pumps can be used to generate accurate currents, and can potentially serve...
Nanoscale single-electron pumps could serve as the realization of a new quantum standard of electric...
Nanoscale single-electron pumps can be used to generate accurate currents, and can potentially serve...
We have implemented single electron counting for the tunneling current through a quantum dot. This a...
As mass-produced silicon transistors have reached the nano-scale, their behavior and performances ar...
Single-electron pumps based on semiconductor quantum dots are promising candidates for the emerging ...
Single-electron pumps based on semiconductor quantum dots are promising candidates for the emerging ...
A redenition of the Ampere based on the quantum metrology triangle is required to improve the accura...
Semiconductor-based quantum dot single-electron pumps are currently the most promising candidates fo...
Semiconductor-based quantum dot single-electron pumps are currently the most promising candidates fo...
Semiconductor-based quantum dot single-electron pumps are currently the most promising candidates fo...
We report electron counting experiments in a silicon metal-oxide-semiconductor quantum dot architect...
We report electron counting experiments in a silicon metal-oxide-semiconductor quantum dot architect...
Nanoscale single-electron pumps can be used to generate accurate currents, and can potentially serve...
Nanoscale single-electron pumps can be used to generate accurate currents, and can potentially serve...
Nanoscale single-electron pumps can be used to generate accurate currents, and can potentially serve...
Nanoscale single-electron pumps could serve as the realization of a new quantum standard of electric...
Nanoscale single-electron pumps can be used to generate accurate currents, and can potentially serve...
We have implemented single electron counting for the tunneling current through a quantum dot. This a...
As mass-produced silicon transistors have reached the nano-scale, their behavior and performances ar...
Single-electron pumps based on semiconductor quantum dots are promising candidates for the emerging ...
Single-electron pumps based on semiconductor quantum dots are promising candidates for the emerging ...
A redenition of the Ampere based on the quantum metrology triangle is required to improve the accura...
Semiconductor-based quantum dot single-electron pumps are currently the most promising candidates fo...
Semiconductor-based quantum dot single-electron pumps are currently the most promising candidates fo...
Semiconductor-based quantum dot single-electron pumps are currently the most promising candidates fo...