Two-dimensional (2D) materials have exhibited potential for infrared detection at room temperature, yet their low light absorption impedes their widespread application. In addition, micromechanical cleavage, which is the main method by which high-quality 2D layers are achieved, typically leads to small-area flakes, hampering their application as photodetectors. In this work, we designed a hybrid plasmonic structure, comprising a metallic bull's eye grating and optical nanoantennas, to collect and concentrate light into a piece of single-layer graphene with sub-wavelength lateral extent. This boosts the interaction between the graphene and light, thereby improving its photodetection performance in the technologically important long-wave infr...
Enhancing light-matter interaction by exciting Dirac plasmons on nanopatterned monolayer graphene is...
The work, presented in this thesis, focuses on studying graphene as a signal enhancing material for ...
We report a strong electron-photon interaction in exfoliated graphene observed at room temperature. ...
Summary form only given. The long-wave infrared photodetector device we study in this work is shown ...
© 2021 Nima Sefidmooye AzarThe discovery of graphene in 2004 opened the door to the wonderful world ...
Graphene exhibits electrical and optical properties promising for future applications in ultra-fast ...
ABSTRACT. Graphene exhibits electrical and optical properties promising for future ap-plications in ...
Room temperature-operable mid-infrared (MIR) photodetectors have drawn significant attention due to ...
© 2020 Ming YeGraphene is the name given to a monolayer of carbon atoms arranged in a two-dimensiona...
Innovative electromagnetic optical nanoantennas functioning at optical frequencies has turned out to...
Integrating and manipulating the nano-optoelectronic properties of Van der Waals heterostructures ca...
Plasmonic excitations, consisting of collective oscillations of the electron gas in a conductive fil...
Graphene is well-known for its extraordinary physical properties such as broadband optical absorptio...
Graphene is a promising material for novel photonic devices due to its broadband optical absorption,...
We demonstrate tunable graphene nanoribbon-based photodetector for the wavelength range 5-12 µm. We...
Enhancing light-matter interaction by exciting Dirac plasmons on nanopatterned monolayer graphene is...
The work, presented in this thesis, focuses on studying graphene as a signal enhancing material for ...
We report a strong electron-photon interaction in exfoliated graphene observed at room temperature. ...
Summary form only given. The long-wave infrared photodetector device we study in this work is shown ...
© 2021 Nima Sefidmooye AzarThe discovery of graphene in 2004 opened the door to the wonderful world ...
Graphene exhibits electrical and optical properties promising for future applications in ultra-fast ...
ABSTRACT. Graphene exhibits electrical and optical properties promising for future ap-plications in ...
Room temperature-operable mid-infrared (MIR) photodetectors have drawn significant attention due to ...
© 2020 Ming YeGraphene is the name given to a monolayer of carbon atoms arranged in a two-dimensiona...
Innovative electromagnetic optical nanoantennas functioning at optical frequencies has turned out to...
Integrating and manipulating the nano-optoelectronic properties of Van der Waals heterostructures ca...
Plasmonic excitations, consisting of collective oscillations of the electron gas in a conductive fil...
Graphene is well-known for its extraordinary physical properties such as broadband optical absorptio...
Graphene is a promising material for novel photonic devices due to its broadband optical absorption,...
We demonstrate tunable graphene nanoribbon-based photodetector for the wavelength range 5-12 µm. We...
Enhancing light-matter interaction by exciting Dirac plasmons on nanopatterned monolayer graphene is...
The work, presented in this thesis, focuses on studying graphene as a signal enhancing material for ...
We report a strong electron-photon interaction in exfoliated graphene observed at room temperature. ...