Graphene, being an atomically thin conducting sheet, is a candidate material for gate electrodes in vacuum electronic devices, as it may be traversed by low-energy electrons. The transparency of graphene to electrons with energies between 2 and 40 eV has been measured by using an optimized vacuum-triode setup. The measured graphene transparency equals ∼60% in most of this energy range. Based on these results, nano-patterned sheets of graphene or of related two-dimensional materials are proposed as gate electrodes for ambipolar vacuum devices
AbstractGraphene is a single layer of carbon atoms arranged in a honeycomb lattice with remarkable m...
We present transport measurements on a tunable three-layer graphene single electron transistor (SET)...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2014.125Cataloged from...
In order to ensure that vacuum electronic devices work with high overall efficiency, it is required ...
In order to ensure that vacuum electronic devices work with high overall efficiency, it is required ...
AbstractGraphene is a single layer of carbon atoms arranged in a honeycomb lattice with remarkable m...
The enhanced emission performance of a graphene/Mo hybrid gate electrode integrated into a nanocarbo...
The enhanced emission performance of a graphene/Mo hybrid gate electrode integrated into a nanocarbo...
Graphene is a single layer of carbon atoms arranged in a honeycomb lattice with remarkable mechanica...
The enhanced emission performance of a graphene/Mo hybrid gate electrode integrated into a nanocarbo...
We experimentally demonstrate the transmission of electrons through different number (1, 2, and 5) o...
High-speed electronic devices rely on short carrier transport times, which are usually achieved by d...
Graphene is a single layer of carbon atoms arranged in a honeycomb lattice with remarkable mechanica...
High-speed electronic devices rely on short carrier transport times, which are usually achieved by d...
This thesis examines the electrical and mechanical properties of graphene sheets. We perform low tem...
AbstractGraphene is a single layer of carbon atoms arranged in a honeycomb lattice with remarkable m...
We present transport measurements on a tunable three-layer graphene single electron transistor (SET)...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2014.125Cataloged from...
In order to ensure that vacuum electronic devices work with high overall efficiency, it is required ...
In order to ensure that vacuum electronic devices work with high overall efficiency, it is required ...
AbstractGraphene is a single layer of carbon atoms arranged in a honeycomb lattice with remarkable m...
The enhanced emission performance of a graphene/Mo hybrid gate electrode integrated into a nanocarbo...
The enhanced emission performance of a graphene/Mo hybrid gate electrode integrated into a nanocarbo...
Graphene is a single layer of carbon atoms arranged in a honeycomb lattice with remarkable mechanica...
The enhanced emission performance of a graphene/Mo hybrid gate electrode integrated into a nanocarbo...
We experimentally demonstrate the transmission of electrons through different number (1, 2, and 5) o...
High-speed electronic devices rely on short carrier transport times, which are usually achieved by d...
Graphene is a single layer of carbon atoms arranged in a honeycomb lattice with remarkable mechanica...
High-speed electronic devices rely on short carrier transport times, which are usually achieved by d...
This thesis examines the electrical and mechanical properties of graphene sheets. We perform low tem...
AbstractGraphene is a single layer of carbon atoms arranged in a honeycomb lattice with remarkable m...
We present transport measurements on a tunable three-layer graphene single electron transistor (SET)...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2014.125Cataloged from...