The Dirac cone underlies many unique electronic properties of graphene1 and topological insulators, and its band structure—two conical bands touching at a single point—has also been realized for photons in waveguide arrays, atoms in optical lattices, and through accidental degeneracy. Deformation of the Dirac cone often reveals intriguing properties; an example is the quantum Hall effect, where a constant magnetic field breaks the Dirac cone into isolated Landau levels. A seemingly unrelated phenomenon is the exceptional point also known as the parity–time symmetry breaking point where two resonances coincide in both their positions and widths. Exceptional points lead to counter-intuitive phenomena such as loss-induced transparency unidirec...
In photonics, most systems are non-Hermitian due to radiation into open space and material losses. A...
We show that the exceptional surfaces of linear three-dimensional non-Hermitian parity-time-symmetri...
In this study, realization and applications of anisotropic zero-refractive-index materials are propo...
Topological physics relies on the existence of Hamiltonian's eigenstate singularities carrying a top...
At photonic Dirac points, electromagnetic waves are governed by the same equations as two-component ...
We formulate and exploit a computational inverse-design method based on topology optimization to dem...
Exceptional points in an optical dimer of spheres, which have the same size and operate in the spect...
We calculate the effect of a Dirac point (a conical singularity in the band structure) on the transm...
By altering the lattice geometry of the photonic crystal (PhC) surface-emitting lasers (PCSELs), we ...
The unique phenomena in acoustic metamaterial at the Dirac-like cone, and at the exceptional spawnin...
Topological physics relies on the existence of Hamiltonian's eigenstate singularities carrying a top...
Existence of out-of-plane conical dispersion for a triangular photonic crystal lattice is reported. ...
A zero-refractive-index metamaterial is one in which waves do not experience any spatial phase chang...
Light trapping within waveguides is a key practice of modern optics, both scientifically and technol...
This thesis is dedicated to the study of photonic Dirac systems, the role of their associated topolo...
In photonics, most systems are non-Hermitian due to radiation into open space and material losses. A...
We show that the exceptional surfaces of linear three-dimensional non-Hermitian parity-time-symmetri...
In this study, realization and applications of anisotropic zero-refractive-index materials are propo...
Topological physics relies on the existence of Hamiltonian's eigenstate singularities carrying a top...
At photonic Dirac points, electromagnetic waves are governed by the same equations as two-component ...
We formulate and exploit a computational inverse-design method based on topology optimization to dem...
Exceptional points in an optical dimer of spheres, which have the same size and operate in the spect...
We calculate the effect of a Dirac point (a conical singularity in the band structure) on the transm...
By altering the lattice geometry of the photonic crystal (PhC) surface-emitting lasers (PCSELs), we ...
The unique phenomena in acoustic metamaterial at the Dirac-like cone, and at the exceptional spawnin...
Topological physics relies on the existence of Hamiltonian's eigenstate singularities carrying a top...
Existence of out-of-plane conical dispersion for a triangular photonic crystal lattice is reported. ...
A zero-refractive-index metamaterial is one in which waves do not experience any spatial phase chang...
Light trapping within waveguides is a key practice of modern optics, both scientifically and technol...
This thesis is dedicated to the study of photonic Dirac systems, the role of their associated topolo...
In photonics, most systems are non-Hermitian due to radiation into open space and material losses. A...
We show that the exceptional surfaces of linear three-dimensional non-Hermitian parity-time-symmetri...
In this study, realization and applications of anisotropic zero-refractive-index materials are propo...