Graphene is an attractive photoconductive material for optical detection due to its broad absorption spectrum and ultrashort response time. However, it remains a great challenge to achieve high responsivity in graphene detectors because of graphene’s weak optical absorption (only 2.3% in the monolayer graphene sheet) and short photocarrier lifetime (<1 ps). Here we show that metallic antenna structures can be designed to simultaneously improve both light absorption and photocarrier collection in graphene detectors. The coupled antennas concentrate free space light into the nanoscale deep-subwavelength antenna gaps, where the graphene light interaction is greatly enhanced as a result of the ultrahigh electric field intensity inside the gap. ...
Nanoscale antennas sandwiched between two graphene monolayers yield a photodetector that efficiently...
Graphene, a one-atom-thick sheet of hexagonally packed carbon atoms, is a novel material with high e...
In this work we study metamaterial-enhanced graphene photodetectors operating in the mid-IR to THz. ...
Graphene is an attractive photoconductive material for optical detection due to its broad absorption...
ABSTRACT: Graphene is an attractive photoconductive material for optical detection due to its broad ...
Nanoscale antennas sandwiched between two graphene monolayers yield a photodetector that efficiently...
Graphene’s high mobility and Fermi velocity, combined with its constant light absorption in the visi...
Mid-infrared light is used for thermal imaging, relying on thermal radiation, and chemical analysis,...
Graphene, a semi-metal with a gapless band structure, has been used in mid-infrared (MIR) photodetec...
Integrating and manipulating the nano-optoelectronic properties of Van der Waals heterostructures ca...
© 2020 Ming YeGraphene is the name given to a monolayer of carbon atoms arranged in a two-dimensiona...
PublishedIn this work we study metamaterial-enhanced graphene photodetectors operating in the mid-IR...
Integrating and manipulating the nano-optoelectronic properties of Van der Waals heterostructures ca...
Graphene research so far has focused on electronic 1-6 rather than photonic applications, in spite o...
Graphene has unique optical and electronic properties that make it attractive as an active material ...
Nanoscale antennas sandwiched between two graphene monolayers yield a photodetector that efficiently...
Graphene, a one-atom-thick sheet of hexagonally packed carbon atoms, is a novel material with high e...
In this work we study metamaterial-enhanced graphene photodetectors operating in the mid-IR to THz. ...
Graphene is an attractive photoconductive material for optical detection due to its broad absorption...
ABSTRACT: Graphene is an attractive photoconductive material for optical detection due to its broad ...
Nanoscale antennas sandwiched between two graphene monolayers yield a photodetector that efficiently...
Graphene’s high mobility and Fermi velocity, combined with its constant light absorption in the visi...
Mid-infrared light is used for thermal imaging, relying on thermal radiation, and chemical analysis,...
Graphene, a semi-metal with a gapless band structure, has been used in mid-infrared (MIR) photodetec...
Integrating and manipulating the nano-optoelectronic properties of Van der Waals heterostructures ca...
© 2020 Ming YeGraphene is the name given to a monolayer of carbon atoms arranged in a two-dimensiona...
PublishedIn this work we study metamaterial-enhanced graphene photodetectors operating in the mid-IR...
Integrating and manipulating the nano-optoelectronic properties of Van der Waals heterostructures ca...
Graphene research so far has focused on electronic 1-6 rather than photonic applications, in spite o...
Graphene has unique optical and electronic properties that make it attractive as an active material ...
Nanoscale antennas sandwiched between two graphene monolayers yield a photodetector that efficiently...
Graphene, a one-atom-thick sheet of hexagonally packed carbon atoms, is a novel material with high e...
In this work we study metamaterial-enhanced graphene photodetectors operating in the mid-IR to THz. ...