In order to effectively realize and control the critical coupling, a graphene-based hyperbolic metamaterial has been proposed to replace the absorbing thin film in the critically coupled resonance structure. Our calculations demonstrate that the critical coupling effect (near-perfect light absorption) can be achieved at the near-infrared wavelength by using this layered structure, while the critical coupling frequency can be tuned by varying the Fermi energy level of graphene sheets via electrostatic biasing. Moreover, we show that the critical coupling frequency can be tuned by changing the thickness of the dielectric or layer number of the graphene sheets in the unit cell of the graphene-dielectric HMM. The optimization performance has al...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
Hyperbolic metamaterials are a class of artificial (nano-) structures, designed to transport electri...
In order to effectively realize and control the critical coupling, a graphene-based hyperbolic metam...
We investigate a novel implementation of hyperbolic metamaterial (HM) at far-infrared frequencies co...
We investigate a novel implementation of hyperbolic metamaterial (HM) at far-infrared frequencies co...
We investigate a novel implementation of hyperbolic metamaterial (HM) at far-infrared frequencies co...
We investigate a novel implementation of hyperbolic metamaterial (HM) at far-infrared frequencies co...
Tuning the macroscopic dielectric response on demand holds potential for actively tunable metaphoton...
Abstract Graphene-based hyperbolic metamaterials provide a unique scaffold for designing nanophotoni...
We numerically demonstrate broadband optical switches which can control the propagation of mid-infra...
We investigate subwavelength grating-coupled distributed Bragg reflector (DBR) in order to achieve t...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
We introduce a graphene-based composite multilayer structure that exhibits hyperbolic-like wavevecto...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
Hyperbolic metamaterials are a class of artificial (nano-) structures, designed to transport electri...
In order to effectively realize and control the critical coupling, a graphene-based hyperbolic metam...
We investigate a novel implementation of hyperbolic metamaterial (HM) at far-infrared frequencies co...
We investigate a novel implementation of hyperbolic metamaterial (HM) at far-infrared frequencies co...
We investigate a novel implementation of hyperbolic metamaterial (HM) at far-infrared frequencies co...
We investigate a novel implementation of hyperbolic metamaterial (HM) at far-infrared frequencies co...
Tuning the macroscopic dielectric response on demand holds potential for actively tunable metaphoton...
Abstract Graphene-based hyperbolic metamaterials provide a unique scaffold for designing nanophotoni...
We numerically demonstrate broadband optical switches which can control the propagation of mid-infra...
We investigate subwavelength grating-coupled distributed Bragg reflector (DBR) in order to achieve t...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
We introduce a graphene-based composite multilayer structure that exhibits hyperbolic-like wavevecto...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
Hyperbolic metamaterials are a class of artificial (nano-) structures, designed to transport electri...