A receiver composed by a graphene FET 200-GHz mixer and a 1-GHz intermediate frequency amplifier integrated on a silicon substrate was modelled, fabricated and characterized. This is the first demonstration of a millimeter wave integrated receiver based on graphene FETs. The receiver conversion loss is measured to be 25 dB across the 185-205-GHz band with 16 dBm of local oscillator pump power, which is in good agreement with the circuit simulations. The simulations show that the receiver conversion loss can be significantly reduced to 16 dB by reducing the contact resistance and by realizing a higher charge carrier mobility in the mixer transistor
Graphene has unique electrical and mechanical properties which can pave the way for new types of dev...
In this work, we analyze high frequency performance of graphene field-effect transistors (GFETs), ap...
Graphene has unique electrical and mechanical properties which can pave the way for new types of dev...
arises for new materials and technologies which can be used in the millimeter wave and terahertz wav...
In recent years, graphene, a two-dimensional monolayer of carbon atoms, has rapidly attracted great ...
A 200-GHz integrated resistive subharmonic mixer based on a single chemical vapor deposition graphen...
A 30 GHz integrated subharmonic mixer based on a single graphene field effect transistor (G-FET) has...
A 200-GHz integrated resistive subharmonic mixer based on a single chemical vapor deposition graphen...
Graphene is a one-atom-thick sheet of carbon with numerous impressive properties. It is a promising ...
We report on the design and characterization of a 200 GHz resistive subharmonic mixer based on a sin...
In this work, resistive fundamental terahertz mixers with wide RF and IF bandwidths based on graphen...
Graphene is a two-dimensional sheet of carbon atoms with numerous envisaged applications owing to it...
The isolation of the two-dimensional material graphene, a single hexagonal sheet of carbon atoms, is...
A 30 GHz integrated subharmonic mixer based on a single graphene field effect transistor (G-FET) has...
The isolation of the two-dimensional material graphene, a single hexagonal sheet of carbon atoms, is...
Graphene has unique electrical and mechanical properties which can pave the way for new types of dev...
In this work, we analyze high frequency performance of graphene field-effect transistors (GFETs), ap...
Graphene has unique electrical and mechanical properties which can pave the way for new types of dev...
arises for new materials and technologies which can be used in the millimeter wave and terahertz wav...
In recent years, graphene, a two-dimensional monolayer of carbon atoms, has rapidly attracted great ...
A 200-GHz integrated resistive subharmonic mixer based on a single chemical vapor deposition graphen...
A 30 GHz integrated subharmonic mixer based on a single graphene field effect transistor (G-FET) has...
A 200-GHz integrated resistive subharmonic mixer based on a single chemical vapor deposition graphen...
Graphene is a one-atom-thick sheet of carbon with numerous impressive properties. It is a promising ...
We report on the design and characterization of a 200 GHz resistive subharmonic mixer based on a sin...
In this work, resistive fundamental terahertz mixers with wide RF and IF bandwidths based on graphen...
Graphene is a two-dimensional sheet of carbon atoms with numerous envisaged applications owing to it...
The isolation of the two-dimensional material graphene, a single hexagonal sheet of carbon atoms, is...
A 30 GHz integrated subharmonic mixer based on a single graphene field effect transistor (G-FET) has...
The isolation of the two-dimensional material graphene, a single hexagonal sheet of carbon atoms, is...
Graphene has unique electrical and mechanical properties which can pave the way for new types of dev...
In this work, we analyze high frequency performance of graphene field-effect transistors (GFETs), ap...
Graphene has unique electrical and mechanical properties which can pave the way for new types of dev...