Hyperbolic lattices emulate particle dynamics equivalent to those in negatively curved space, with connections to general relativity. Here, the authors use electric circuits with a novel complex-phase circuit element to simulate hyperbolic graphene with negligible boundary contributions
Strongly anisotropic media where the principal components of electric permittivity or magnetic perme...
We investigate the nonlinear dc conductivity of graphene by explicitly solving the Boltzmann equatio...
Motivated by the recent experimental realizations of hyperbolic lattices in circuit quantum electrod...
The Laplace operator encodes the behavior of physical systems at vastly different scales, describing...
The discovery of novel topological states has served as a major branch in physics and material scien...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
Nearly everything relies on the electromagnetic (EM) force to be in its current form. Therefore, lig...
The investigation of hyperbolic metamaterials, shows that metal layers that are part of graphene str...
We introduce a different perspective describing electron-phonon interactions in graphene based on cu...
The investigation of hyperbolic metamaterials, shows that metal layers that are part of graphene str...
We propose metamaterials for THz frequencies based on multilayer graphene structures. We calculate t...
Topological transition of the iso-frequency contour (IFC) from a closed ellipsoid to an open hyperbo...
International audienceBased on the numerical solution of the Quantum Lattice Boltzmann Method in cur...
We introduce a graphene-based composite multilayer structure that exhibits hyperbolic-like wavevecto...
International audienceLattice gauge theories are fundamental to such distinct fields as particle phy...
Strongly anisotropic media where the principal components of electric permittivity or magnetic perme...
We investigate the nonlinear dc conductivity of graphene by explicitly solving the Boltzmann equatio...
Motivated by the recent experimental realizations of hyperbolic lattices in circuit quantum electrod...
The Laplace operator encodes the behavior of physical systems at vastly different scales, describing...
The discovery of novel topological states has served as a major branch in physics and material scien...
We introduce graphene-based hyperbolic metamaterial for terahertz frequencies. The LDOS as well as t...
Nearly everything relies on the electromagnetic (EM) force to be in its current form. Therefore, lig...
The investigation of hyperbolic metamaterials, shows that metal layers that are part of graphene str...
We introduce a different perspective describing electron-phonon interactions in graphene based on cu...
The investigation of hyperbolic metamaterials, shows that metal layers that are part of graphene str...
We propose metamaterials for THz frequencies based on multilayer graphene structures. We calculate t...
Topological transition of the iso-frequency contour (IFC) from a closed ellipsoid to an open hyperbo...
International audienceBased on the numerical solution of the Quantum Lattice Boltzmann Method in cur...
We introduce a graphene-based composite multilayer structure that exhibits hyperbolic-like wavevecto...
International audienceLattice gauge theories are fundamental to such distinct fields as particle phy...
Strongly anisotropic media where the principal components of electric permittivity or magnetic perme...
We investigate the nonlinear dc conductivity of graphene by explicitly solving the Boltzmann equatio...
Motivated by the recent experimental realizations of hyperbolic lattices in circuit quantum electrod...