In this letter, we report a method to control the reflection phase of microwaves using electrically tunable graphene devices. The device consists of mutually gated large-area graphene layers placed at a quarter-wave distance from a metallic surface. This device structure yields electrically tunable resonance absorbance and step-like phase shift around the resonance frequency when the impedance of graphene matches with the free space impedance. Electrostatic control of charge density on graphene yields unprecedented ability to control both intensity (>50 dB) and phase (∼π) of the reflected electromagnetic waves with voltage. Furthermore, using the asymmetry of the doping at opposite polarity of the bias voltages, we showed bidirectional phas...
ABSTRACT: We demonstrate a graphene-based electro-absorption modulator achieving extraordinary contr...
The combination of graphene and a metasurface holds great promise for dynamic manipulation of the el...
The active and dynamic control of the TeraHertz (THz) waves is highly demanded due to the rapid deve...
In this letter, we report a method to control the reflection phase of microwaves using electrically ...
Radar-absorbing materials are used in stealth technologies for concealment of an object from radar d...
Electrical control of amplitude and phase of terahertz radiation (THz) is the key technological chal...
Metamaterials bring subwavelength resonating structures together to overcome the limitations of conv...
Metamaterials bring subwavelength resonating structures together to overcome the limitations of conv...
This doctoral thesis is about the use of graphene for microwave tunable passive components. It opens...
Metamaterials bring subwavelength resonating structures together to overcome the limitations of conv...
We demonstrate a graphene-based electro-absorption modulator achieving extraordinary control of tera...
Optoelectronic terahertz modulators, operated by actively tuning metamaterial, plasmonic resonator s...
Graphene is the most notable among carbon-based materials and it has been greatly studied. One of th...
We report experimental observation of electrically tunable coherent perfect absorption (CPA) of tera...
Metamaterials bring subwavelength resonating structures together to overcome the limitations of conv...
ABSTRACT: We demonstrate a graphene-based electro-absorption modulator achieving extraordinary contr...
The combination of graphene and a metasurface holds great promise for dynamic manipulation of the el...
The active and dynamic control of the TeraHertz (THz) waves is highly demanded due to the rapid deve...
In this letter, we report a method to control the reflection phase of microwaves using electrically ...
Radar-absorbing materials are used in stealth technologies for concealment of an object from radar d...
Electrical control of amplitude and phase of terahertz radiation (THz) is the key technological chal...
Metamaterials bring subwavelength resonating structures together to overcome the limitations of conv...
Metamaterials bring subwavelength resonating structures together to overcome the limitations of conv...
This doctoral thesis is about the use of graphene for microwave tunable passive components. It opens...
Metamaterials bring subwavelength resonating structures together to overcome the limitations of conv...
We demonstrate a graphene-based electro-absorption modulator achieving extraordinary control of tera...
Optoelectronic terahertz modulators, operated by actively tuning metamaterial, plasmonic resonator s...
Graphene is the most notable among carbon-based materials and it has been greatly studied. One of th...
We report experimental observation of electrically tunable coherent perfect absorption (CPA) of tera...
Metamaterials bring subwavelength resonating structures together to overcome the limitations of conv...
ABSTRACT: We demonstrate a graphene-based electro-absorption modulator achieving extraordinary contr...
The combination of graphene and a metasurface holds great promise for dynamic manipulation of the el...
The active and dynamic control of the TeraHertz (THz) waves is highly demanded due to the rapid deve...