The aim is to link the unit ampere to the elementary charge e, a true invariant of nature. The high level of control over single electrons needed to realise such a quantum current standard has led to much interest in devices employing Coulomb blockade of tunnelling[2]. The time taken for an electron to tunnel through the barriers defining the dot, limits the output current of such devices to several pA[3,4]. A substantial increase in the current would allow these devices to be of a real practical use as a standard. This thesis explores another pumping mechanism for single charges which does not rely on Coulomb blockade of tunnelling. Single electrons are transported through a periodically formed decoupled quantum dot (QD). The electrons tra...
Using standard microfabrication techniques, it is now possible to construct devices that appear to r...
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...
Single-electron pumps are set to revolutionize electrical metrology by enabling the ampere to be red...
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...
Published: June 19, 2018In quantum metrology, semiconductor single-electron pumps are used to genera...
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...
The SI unit system has recently moved away from artificial definitions of units to the elegant quant...
In quantum metrology, semiconductor single-electron pumps are used to generate accurate electric cur...
The SI unit system has recently moved away from artificial definitions of units to the elegant quant...
Semiconductor-based quantum dot single-electron pumps are currently the most promising candidates fo...
Semiconducting nanowires (NWs) are a versatile, highly tunable material platform at the heart of man...
Using standard microfabrication techniques, it is now possible to construct devices that appear to r...
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...
Single-electron pumps are set to revolutionize electrical metrology by enabling the ampere to be red...
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...
Published: June 19, 2018In quantum metrology, semiconductor single-electron pumps are used to genera...
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...
The SI unit system has recently moved away from artificial definitions of units to the elegant quant...
In quantum metrology, semiconductor single-electron pumps are used to generate accurate electric cur...
The SI unit system has recently moved away from artificial definitions of units to the elegant quant...
Semiconductor-based quantum dot single-electron pumps are currently the most promising candidates fo...
Semiconducting nanowires (NWs) are a versatile, highly tunable material platform at the heart of man...
Using standard microfabrication techniques, it is now possible to construct devices that appear to r...
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...