Graphene is a highly promising material in the development of new photodetector technologies, in particular due its tunable optoelectronic properties, high mobilities and fast relaxation times coupled to its atomic thinness and other unique electrical, thermal and mechanical properties. Optoelectronic applications and graphene-based photodetector technology are still in their infancy, but with a range of device integration and manufacturing approaches emerging this field is progressing quickly. In this review we explore the potential of graphene in the context of existing single photon counting technologies by comparing their performance to simulations of graphene-based single photon counting and low photon intensity photodetection technolo...
The exceptional optical and electronic properties of graphene make it a promising material for photo...
Graphene and graphene-based materials exhibit exceptional optical and electrical properties with gre...
Although graphene has met many of its initially predicted optoelectronic, thermal, and mechanical pr...
Graphene is a highly promising material in the development of new photodetector technologies, in par...
Graphene is a highly promising material in the development of new photodetector technologies, in par...
Graphene is a highly promising material in the development of new photodetector technologies, in par...
Graphene is a highly promising material in the development of new photodetector technologies, in par...
Graphene is a highly promising material in the development of new photodetector technologies, in par...
In this paper we outline our work towards high sensitivity graphene-based detectors at X-Ray, Terahe...
The latest technological developments have resulted in a push for faster, cheaper and simpler photod...
The latest technological developments have resulted in a push for faster, cheaper and simpler photod...
The latest technological developments have resulted in a push for faster, cheaper and simpler photod...
The latest technological developments have resulted in a push for faster, cheaper and simpler photod...
Little is known about the impact of different locations of a graphene upon absorption of photons on ...
Little is known about the impact of different locations of a graphene upon absorption of photons on ...
The exceptional optical and electronic properties of graphene make it a promising material for photo...
Graphene and graphene-based materials exhibit exceptional optical and electrical properties with gre...
Although graphene has met many of its initially predicted optoelectronic, thermal, and mechanical pr...
Graphene is a highly promising material in the development of new photodetector technologies, in par...
Graphene is a highly promising material in the development of new photodetector technologies, in par...
Graphene is a highly promising material in the development of new photodetector technologies, in par...
Graphene is a highly promising material in the development of new photodetector technologies, in par...
Graphene is a highly promising material in the development of new photodetector technologies, in par...
In this paper we outline our work towards high sensitivity graphene-based detectors at X-Ray, Terahe...
The latest technological developments have resulted in a push for faster, cheaper and simpler photod...
The latest technological developments have resulted in a push for faster, cheaper and simpler photod...
The latest technological developments have resulted in a push for faster, cheaper and simpler photod...
The latest technological developments have resulted in a push for faster, cheaper and simpler photod...
Little is known about the impact of different locations of a graphene upon absorption of photons on ...
Little is known about the impact of different locations of a graphene upon absorption of photons on ...
The exceptional optical and electronic properties of graphene make it a promising material for photo...
Graphene and graphene-based materials exhibit exceptional optical and electrical properties with gre...
Although graphene has met many of its initially predicted optoelectronic, thermal, and mechanical pr...