In this Letter, the enhanced and directional radiation in a wide terahertz (THz) frequency range in a graphene hyperbolic medium excited by an electric dipole is presented. The numerical simulations and theoretical analyses indicate that the enhanced radiation comes from the strong surface plasmon couplings in the graphene hyperbolic medium, consisting of alternative graphene and dielectric substrate layers. The simulation results also show that the peak power flow of the enhanced THz radiation in the graphene hyperbolic medium is dramatically enhanced by more than 1 order of magnitude over that in a general medium within a certain distance from the dipole, and the electromagnetic fields are strongly concentrated in a narrow angle. Also, th...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
Terahertz (THz) radiation can revolutionize modern science and technology. To this date, it remains ...
The properties of surface plasmon-polaritons (SPPs) in graphene are discussed and several possible w...
We demonstrate a mechanism of efficiently transforming surface plasmon polaritons (SPPs) into Cheren...
We propose and theoretically explore terahertz amplification, based on stimulated generation of plas...
We propose and theoretically explore terahertz amplification, based on stimulated generation of plas...
A physical mechanism is presented which can generate coherent and tunable terahertz (THz) radiation....
A physical mechanism is presented which can generate coherent and tunable terahertz (THz) radiation....
A novel physical mechanism is reported which can generate coherent and tunable terahertz (THz) radia...
We propose a novel kind of terahertz radiation source utilizing grapheme surface plasmon polaritons ...
We propose a novel kind of terahertz radiation source utilizing grapheme surface plasmon polaritons ...
The present work deals with a theoretical research on the emission and radiation properties of a dip...
Emission and utilization of terahertz range electromagnetic radiation is an active area of research...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
Terahertz (THz) technologies have numerous applications such as biological and medical imaging, secu...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
Terahertz (THz) radiation can revolutionize modern science and technology. To this date, it remains ...
The properties of surface plasmon-polaritons (SPPs) in graphene are discussed and several possible w...
We demonstrate a mechanism of efficiently transforming surface plasmon polaritons (SPPs) into Cheren...
We propose and theoretically explore terahertz amplification, based on stimulated generation of plas...
We propose and theoretically explore terahertz amplification, based on stimulated generation of plas...
A physical mechanism is presented which can generate coherent and tunable terahertz (THz) radiation....
A physical mechanism is presented which can generate coherent and tunable terahertz (THz) radiation....
A novel physical mechanism is reported which can generate coherent and tunable terahertz (THz) radia...
We propose a novel kind of terahertz radiation source utilizing grapheme surface plasmon polaritons ...
We propose a novel kind of terahertz radiation source utilizing grapheme surface plasmon polaritons ...
The present work deals with a theoretical research on the emission and radiation properties of a dip...
Emission and utilization of terahertz range electromagnetic radiation is an active area of research...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
Terahertz (THz) technologies have numerous applications such as biological and medical imaging, secu...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
Terahertz (THz) radiation can revolutionize modern science and technology. To this date, it remains ...
The properties of surface plasmon-polaritons (SPPs) in graphene are discussed and several possible w...