We demonstrate two different Terahertz (THz) rectification mechanisms by graphene field effect transistors: 1) a standard rectification mechanism where THz radiation modulates simultaneously the carrier density and the carrier velocity, and 2) a mesoscopic rectification due to the existence of the nonlinearity associated to the quantum interference effects
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
When high-frequency radiation is incident upon graphene subjected to a perpendicular magnetic field,...
This Master thesis (Tesi di Laurea Magistrale) is aimed at the design and test of a graphene-based T...
We demonstrate two different Terahertz (THz) rectification mechanisms by graphene field effect trans...
Abstract: We bring together two areas of terahertz (THz) technology that have benefited from recent ...
The unique optoelectronic properties of graphene make it an ideal platform for a variety of photonic...
Single-layer graphene absorbs a small fraction of incident terahertz waves by intraband transition o...
We bring together two areas of terahertz (THz) technology that have benefited from recent advancemen...
Detectors for quasi-optical and guide THz waves are key elements of any THz technology. In recent ye...
In this work we report on the response of asymmetric graphene based devices to subterahertz and tera...
We show that the transmission of a terahertz (THz) pulse through single-layer graphene is strongly n...
This study reviews recent advances in room-temperature coherent amplification of terahertz (THz) rad...
ABSTRACT: Gate-controllable transmission of terahertz (THz) radiation makes graphene a promising mat...
International audienceInterest in terahertz (THz) systems and technology has grown significantly ove...
This paper addresses the potential to design reconfigurable terahertz devices using electrically tun...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
When high-frequency radiation is incident upon graphene subjected to a perpendicular magnetic field,...
This Master thesis (Tesi di Laurea Magistrale) is aimed at the design and test of a graphene-based T...
We demonstrate two different Terahertz (THz) rectification mechanisms by graphene field effect trans...
Abstract: We bring together two areas of terahertz (THz) technology that have benefited from recent ...
The unique optoelectronic properties of graphene make it an ideal platform for a variety of photonic...
Single-layer graphene absorbs a small fraction of incident terahertz waves by intraband transition o...
We bring together two areas of terahertz (THz) technology that have benefited from recent advancemen...
Detectors for quasi-optical and guide THz waves are key elements of any THz technology. In recent ye...
In this work we report on the response of asymmetric graphene based devices to subterahertz and tera...
We show that the transmission of a terahertz (THz) pulse through single-layer graphene is strongly n...
This study reviews recent advances in room-temperature coherent amplification of terahertz (THz) rad...
ABSTRACT: Gate-controllable transmission of terahertz (THz) radiation makes graphene a promising mat...
International audienceInterest in terahertz (THz) systems and technology has grown significantly ove...
This paper addresses the potential to design reconfigurable terahertz devices using electrically tun...
Graphene is conceivably the most nonlinear optoelectronic material we know. Its nonlinear optical co...
When high-frequency radiation is incident upon graphene subjected to a perpendicular magnetic field,...
This Master thesis (Tesi di Laurea Magistrale) is aimed at the design and test of a graphene-based T...