The development of transparent radio-frequency electronics has been limited, until recently, by the lack of suitable materials. Naturally thin and transparent graphene may lead to disruptive innovations in such applications. Here, we realize optically transparent broadband absorbers operating in the millimetre wave regime achieved by stacking graphene bearing quartz substrates on a ground plate. Broadband absorption is a result of mutually coupled Fabry-Perot resonators represented by each graphene-quartz substrate. An analytical model has been developed to predict the absorption performance and the angular dependence of the absorber. Using a repeated transfer-and-etch process, multilayer graphene was processed to control its surface resist...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...
Electrolytically tunable graphene “building blocks” for reconfigurable and optically transparent mi...
Electrolytically tunable graphene “building blocks” for reconfigurable and optically transparent mi...
The development of transparent radio-frequency electronics has been limited, until recently, by the ...
This work was funded by the Graphene Research Centre, University of Cambridge, the Engineering and P...
We propose an absorber with ultra-broadband in millimeter wave band, which has an extraordinary rela...
A new, transparent, metal-free absorber, based on the use of multilayer graphene/dielectric laminate...
Here we experimentally study the microwave absorption and near-field radiation behavior of monolayer...
Abstract We propose and numerically demonstrate an ultra-broadband graphene-based metamaterial absor...
Metamaterial absorbers (MMAs) that absorb electromagnetic waves among an ultra-broad frequency band ...
Metamaterial absorbers (MMAs) that absorb electromagnetic waves among an ultra-broad frequency band ...
A graphene-based controllable broadband terahertz metamaterial absorber with transmission band is pr...
By exploiting singular spatial modulations of the graphene conductivity, we design a broadband, tuna...
Here we experimentally study the microwave absorption and near-field radiation behaviour of monolay...
We investigate the absorption enhancement of an unstructured graphene sheet in a broad frequency ran...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...
Electrolytically tunable graphene “building blocks” for reconfigurable and optically transparent mi...
Electrolytically tunable graphene “building blocks” for reconfigurable and optically transparent mi...
The development of transparent radio-frequency electronics has been limited, until recently, by the ...
This work was funded by the Graphene Research Centre, University of Cambridge, the Engineering and P...
We propose an absorber with ultra-broadband in millimeter wave band, which has an extraordinary rela...
A new, transparent, metal-free absorber, based on the use of multilayer graphene/dielectric laminate...
Here we experimentally study the microwave absorption and near-field radiation behavior of monolayer...
Abstract We propose and numerically demonstrate an ultra-broadband graphene-based metamaterial absor...
Metamaterial absorbers (MMAs) that absorb electromagnetic waves among an ultra-broad frequency band ...
Metamaterial absorbers (MMAs) that absorb electromagnetic waves among an ultra-broad frequency band ...
A graphene-based controllable broadband terahertz metamaterial absorber with transmission band is pr...
By exploiting singular spatial modulations of the graphene conductivity, we design a broadband, tuna...
Here we experimentally study the microwave absorption and near-field radiation behaviour of monolay...
We investigate the absorption enhancement of an unstructured graphene sheet in a broad frequency ran...
We present a simple design for a broadband tunable terahertz (THz) metamaterial absorber (MMA) consi...
Electrolytically tunable graphene “building blocks” for reconfigurable and optically transparent mi...
Electrolytically tunable graphene “building blocks” for reconfigurable and optically transparent mi...