Graphene plasmonic antennas possess two significant features that render them appealing for short-range wireless communications, notably, inherent tunability and miniaturization due to the unique frequency dispersion of graphene and its support for surface plasmon waves in the terahertz band. In this letter, dipole-like antennas using few-layer graphene are proposed to achieve a better trade-off between miniaturization and radiation efficiency than current monolayer graphene antennas. The characteristics of few-layer graphene antennas are evaluated and then compared with those of antennas based on monolayer graphene and graphene stacks, which could also provide such improvements. To this end, first, the propagation properties of one-dimensi...
We show the first THz emission of a graphene based plasmonic antenna structure. Furthermore we prese...
This paper proposes design and investigates of graphene based plasmonic microstrip antenna for terah...
Graphene offers a large potential to downscale antennas to the micrometer scale, due to its special ...
Graphene plasmonic antennas possess two significant features that render them appealing for short-ra...
Graphene plasmonic antennas possess two significant features that render them appealing for short-ra...
Graphene plasmonic antennas possess two significant features that render them appealing for short-ra...
Graphene is a unique material for the implementation of terahertz antennas due to extraordinary prop...
Graphene is a unique material for the implementation of terahertz antennas due to extraordinary prop...
Graphene is a unique material for the implementation of terahertz antennas due to extraordinary prop...
In this opening presentation we will first recall the main characteristics of graphene conductivity ...
Scattering of the terahertz radiation on a graphene-based nano-antenna is considered. Different elec...
Scattering of the terahertz radiation on a graphene-based nano-antenna is considered. Different elec...
We show the first THz emission of a graphene based plasmonic antenna structure. Furthermore we prese...
Graphene, which consists of one atomic slide made from the Carbon, and it utilized in various of the...
Graphene offers a large potential to downscale antennas to the micrometer scale, due to its special ...
We show the first THz emission of a graphene based plasmonic antenna structure. Furthermore we prese...
This paper proposes design and investigates of graphene based plasmonic microstrip antenna for terah...
Graphene offers a large potential to downscale antennas to the micrometer scale, due to its special ...
Graphene plasmonic antennas possess two significant features that render them appealing for short-ra...
Graphene plasmonic antennas possess two significant features that render them appealing for short-ra...
Graphene plasmonic antennas possess two significant features that render them appealing for short-ra...
Graphene is a unique material for the implementation of terahertz antennas due to extraordinary prop...
Graphene is a unique material for the implementation of terahertz antennas due to extraordinary prop...
Graphene is a unique material for the implementation of terahertz antennas due to extraordinary prop...
In this opening presentation we will first recall the main characteristics of graphene conductivity ...
Scattering of the terahertz radiation on a graphene-based nano-antenna is considered. Different elec...
Scattering of the terahertz radiation on a graphene-based nano-antenna is considered. Different elec...
We show the first THz emission of a graphene based plasmonic antenna structure. Furthermore we prese...
Graphene, which consists of one atomic slide made from the Carbon, and it utilized in various of the...
Graphene offers a large potential to downscale antennas to the micrometer scale, due to its special ...
We show the first THz emission of a graphene based plasmonic antenna structure. Furthermore we prese...
This paper proposes design and investigates of graphene based plasmonic microstrip antenna for terah...
Graphene offers a large potential to downscale antennas to the micrometer scale, due to its special ...