Patterned graphene, as an atomically thin layer, supports localized surface plasmon polaritons at mid-infrared or far-infrared frequencies. This provides a pronounced optical force/torque in addition to large optical cross sections and will make it an ideal candidate for optical manipulation. Here, we study the optical force and torque exerted by a linearly polarized plane wave on circular and oval graphene flakes (single layers of graphene). While the torque vanishes for circular flakes, the finite torque allows rotating and orienting oval flakes relative to the electric field polarization. Depending on the wavelength, the alignment is either parallel or perpendicular to the electric field vector. In our contribution, we rely on a full-wav...
It is shown that an attenuated total reflection structure containing a graphene layer can operate as...
We discuss the renormalization of the polarizability of a nanoparticle in the presence of either: (1...
The propagation of surface plasmon polaritons in graphene at a near infrared wavelength of 1.55 μm w...
Patterned graphene, as an atomically thin layer, supports localized surface plasmon polaritons at mi...
Graphene is a two-dimensional (2D) material, and it has many applications in electronics and photoni...
We propose a scheme to directionally couple light into graphene plasmons by placing a graphene shee...
Resumen del trabajo presentado al Workshop on Analysis, Modeling, and Computation for Nanoscale Syst...
Owing to a large diamagnetism, graphene flakes can respond and be aligned to magnetic field like a f...
Using numerical simulations, here, we demonstrate that a single sheet of graphene with properly desi...
Graphene coated on top of photonic-plasmonic metasurfaces can produce resonant radiative emission in...
The effects of induced optical polarization by Dirac electrons in graphene on the hybridization of r...
Dynamic switching of a plasmonic resonance may find numerous applications in subwavelength optoelect...
Being one-atom thick and tunable simultaneously, graphene plays the revolutionizing role in many are...
Planar alignment of disc-like nanomaterials is required to transfer their superior anisotropic prope...
Spin and orbital angular momenta of light are important degrees of freedom in nanophotonics which co...
It is shown that an attenuated total reflection structure containing a graphene layer can operate as...
We discuss the renormalization of the polarizability of a nanoparticle in the presence of either: (1...
The propagation of surface plasmon polaritons in graphene at a near infrared wavelength of 1.55 μm w...
Patterned graphene, as an atomically thin layer, supports localized surface plasmon polaritons at mi...
Graphene is a two-dimensional (2D) material, and it has many applications in electronics and photoni...
We propose a scheme to directionally couple light into graphene plasmons by placing a graphene shee...
Resumen del trabajo presentado al Workshop on Analysis, Modeling, and Computation for Nanoscale Syst...
Owing to a large diamagnetism, graphene flakes can respond and be aligned to magnetic field like a f...
Using numerical simulations, here, we demonstrate that a single sheet of graphene with properly desi...
Graphene coated on top of photonic-plasmonic metasurfaces can produce resonant radiative emission in...
The effects of induced optical polarization by Dirac electrons in graphene on the hybridization of r...
Dynamic switching of a plasmonic resonance may find numerous applications in subwavelength optoelect...
Being one-atom thick and tunable simultaneously, graphene plays the revolutionizing role in many are...
Planar alignment of disc-like nanomaterials is required to transfer their superior anisotropic prope...
Spin and orbital angular momenta of light are important degrees of freedom in nanophotonics which co...
It is shown that an attenuated total reflection structure containing a graphene layer can operate as...
We discuss the renormalization of the polarizability of a nanoparticle in the presence of either: (1...
The propagation of surface plasmon polaritons in graphene at a near infrared wavelength of 1.55 μm w...