In quantum metrology, semiconductor single-electron pumps are used to generate accurate electric currents with the ultimate goal of implementing the emerging quantum standard of the ampere. Pumps based on electrostatically defined tunable quantum dots (QDs) have thus far shown the most promising performance in combining fast and accurate charge transfer. However, at frequencies exceeding approximately 1 GHz the accuracy typically decreases. Recently, hybrid pumps based on QDs coupled to trap states have led to increased transfer rates due to tighter electrostatic confinement. Here, we operate a hybrid electron pump in silicon obtained by coupling a QD to multiple parasitic states and achieve robust current quantization up to a few gigahertz...
Nanoscale single-electron pumps could serve as the realization of a new quantum standard of electric...
Electron pumps capable of delivering a current higher than 100 pA with sufficient accuracy are likel...
Semiconductor-based quantum dot single-electron pumps are currently the most promising candidates fo...
In quantum metrology, semiconductor single-electron pumps are used to generate accurate electric cur...
Published: June 19, 2018In quantum metrology, semiconductor single-electron pumps are used to genera...
Manipulation of single electrons is the key to developing ultimate electronics such as single-electr...
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 ...
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 can be used to generate accurate currents, and can potentially serve...
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 ...
Single-electron pumps based on semiconductor quantum dots are promising candidates for the emerging ...
Nanoscale single-electron pumps could serve as the realization of a new quantum standard of electric...
Electron pumps capable of delivering a current higher than 100 pA with sufficient accuracy are likel...
Semiconductor-based quantum dot single-electron pumps are currently the most promising candidates fo...
In quantum metrology, semiconductor single-electron pumps are used to generate accurate electric cur...
Published: June 19, 2018In quantum metrology, semiconductor single-electron pumps are used to genera...
Manipulation of single electrons is the key to developing ultimate electronics such as single-electr...
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 ...
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 can be used to generate accurate currents, and can potentially serve...
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 ...
Single-electron pumps based on semiconductor quantum dots are promising candidates for the emerging ...
Nanoscale single-electron pumps could serve as the realization of a new quantum standard of electric...
Electron pumps capable of delivering a current higher than 100 pA with sufficient accuracy are likel...
Semiconductor-based quantum dot single-electron pumps are currently the most promising candidates fo...