Area of research
Atomic and Molecular Physics, and Optics · Statistical and Nonlinear Physics
Research interest
Research interests include Nonlinear Photonic Systems, Advanced Fiber Laser Technologies, Photonic and Optical Devices, and Topological Materials and Phenomena.
Pairing particles into holonomies.
Unveiling the self-orthogonality at exceptional points in driven
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-symmetric systems
Symmetry-enforced state revival in time-varying photonic lattices
Path-integral quantization of the electromagnetic field in nonlinear dielectric materials
State transfer in latent-symmetric networks
Space-time-topological events in photonic quantum walks
Observation of Joule–Thomson photon-gas expansion
Non-adiabatic holonomies for photonic quantum computing
Selective filtering of photonic quantum entanglement via anti-parity-time symmetry.
Unbroken P T -symmetry in the absence of gain or loss.
Crossing exceptional points in non-Hermitian quantum systems.
Polished laser-written surface waveguides for integrated-photonic chemical sensors
Discrete nonlinear topological photonics
Realizing efficient topological temporal pumping in electrical circuits
Parity-time-symmetric photonic topological insulator.
Harnessing collective radiative phenomena on a photonic Kagome lattice
Electro-optical control of polarization in femtosecond-laser written waveguides using an embedded liquid crystal cell
Topological Hong-Ou-Mandel interference.
A Perspective on Synthetic Dimensions in Photonics
Supersymmetric Reshaping and Higher‐Dimensional Rearrangement of Photonic Lattices
Theory of nonlinear corner states in photonic fractal lattices.
Topological triple phase transition in non-Hermitian Floquet quasicrystals.
Fractal photonic topological insulators.
Three-dimensional non-Abelian quantum holonomy
Photonic topological insulator induced by a dislocation in three dimensions.
Observation-dependent suppression and enhancement of two-photon coincidences by tailored losses
Bimorphic Floquet topological insulators.
Observation of Anderson localization beyond the spectrum of the disorder.
Observation of photonic constant-intensity waves and induced transparency in tailored non-Hermitian lattices.