Plasmons, collective oscillations of electron systems, can efficiently couple light and electric current, and thus can be used to create sub-wavelength photodetectors, radiation mixers, and on-chip spectrometers. Despite considerable effort, it has proven challenging to implement plasmonic devices operating at terahertz frequencies. The material capable to meet this challenge is graphene as it supports long-lived electrically tunable plasmons. Here we demonstrate plasmon-assisted resonant detection of terahertz radiation by antenna-coupled graphene transistors that act as both plasmonic Fabry-Perot cavities and rectifying elements. By varying the plasmon velocity using gate voltage, we tune our detectors between multiple resonant modes and ...
Terahertz (THz) fields are widely used for sensing, communication and quality control. In future app...
We observe and theoretically study new plasmon resonances in hybrid metalgraphene structures. We dem...
Terahertz (THz) fields are widely used for sensing, communication and quality control. In future app...
Terahertz (THz) devices are designed to operate from 0.1-10 THz. The THz spectra have unique propert...
Plasmonic excitations, consisting of collective oscillations of the electron gas in a conductive fil...
The unique optoelectronic properties of graphene make it an ideal platform for a variety of photonic...
The unique optoelectronic properties of graphene make it an ideal platform for a variety of photonic...
This study reviews recent advances in room-temperature coherent amplification of terahertz (THz) rad...
Terahertz (THz) radiation has become increasingly important in many scientific and commercial fields...
The unique optoelectronic properties of graphene make it an ideal platform for a variety of photonic...
We report here a new type of plasmon resonance that occurs when graphene is connected to a metal. Th...
We report the characterization of centimeter sized graphene field-effect transistors with ionic gati...
Plasmon modes in graphene can be tuned into resonance with an incident terahertz electromagnetic wav...
We report the characterization of centimeter sized graphene field-effect transistors with ionic gati...
We present a fast room temperature terahertz detector based on graphene loaded plasmonic antenna arr...
Terahertz (THz) fields are widely used for sensing, communication and quality control. In future app...
We observe and theoretically study new plasmon resonances in hybrid metalgraphene structures. We dem...
Terahertz (THz) fields are widely used for sensing, communication and quality control. In future app...
Terahertz (THz) devices are designed to operate from 0.1-10 THz. The THz spectra have unique propert...
Plasmonic excitations, consisting of collective oscillations of the electron gas in a conductive fil...
The unique optoelectronic properties of graphene make it an ideal platform for a variety of photonic...
The unique optoelectronic properties of graphene make it an ideal platform for a variety of photonic...
This study reviews recent advances in room-temperature coherent amplification of terahertz (THz) rad...
Terahertz (THz) radiation has become increasingly important in many scientific and commercial fields...
The unique optoelectronic properties of graphene make it an ideal platform for a variety of photonic...
We report here a new type of plasmon resonance that occurs when graphene is connected to a metal. Th...
We report the characterization of centimeter sized graphene field-effect transistors with ionic gati...
Plasmon modes in graphene can be tuned into resonance with an incident terahertz electromagnetic wav...
We report the characterization of centimeter sized graphene field-effect transistors with ionic gati...
We present a fast room temperature terahertz detector based on graphene loaded plasmonic antenna arr...
Terahertz (THz) fields are widely used for sensing, communication and quality control. In future app...
We observe and theoretically study new plasmon resonances in hybrid metalgraphene structures. We dem...
Terahertz (THz) fields are widely used for sensing, communication and quality control. In future app...