Area of research
Biomedical Engineering · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Plasmonic and Surface Plasmon Research, Photonic Crystals and Applications, Strong Light-Matter Interactions, and Photonic and Optical Devices.
Broadband Dipole Absorption in Dispersive Photonic Time Crystals
Near-Field Gain and Far-Field Control via a Plasmonic Time Crystal Slab
Cavity-enhanced energy transport in molecular systems.
Collective nature of high-
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resonances in finite-size photonic metastructures
Topologically Protected Edge States in Time Photonic Crystals with Chiral Symmetry
Long-range hyperbolic polaritons on a non-hyperbolic crystal surface.
Spatially Resolved Photon Statistics of General Nanophotonic Systems
Photon-mediated interactions and dynamics of coherently driven quantum emitters in complex photonic environments
Quantum Theory of Photon Pair Creation in Photonic Time Crystals.
Constructing Qubit Edge States by Inverse-Designing the Electromagnetic Environment.
Rough Fabry-Perot cavity: a vastly multi-scale numerical problem.
Directional Flow of Confined Polaritons in CrSBr.
Spatiotemporal Superfocusing
Casimir-Lifshitz Theory for Cavity Modification of Ground-State Energy
Squeezing and quantum control of the antiferromagnetic magnon pseudospin
Light–matter interactions in quantum nanophotonic devices
Roadmap on electromagnetic metamaterials and metasurfaces
Electroluminescence as a Probe of Strong Exciton-Plasmon Coupling in Few-Layer WSe<sub>2</sub>.
Lindblad Master Equation Capable of Describing Hybrid Quantum Systems in the Ultrastrong Coupling Regime.
Ultrastrong exciton-plasmon couplings in WS<sub>2</sub> multilayers synthesized with a random multi-singular metasurface at room temperature.
Strong Light-Matter Coupling in Lead Halide Perovskite Quantum Dot Solids.
Multiqubit quantum state preparation enabled by topology optimization
A mixed perturbative-nonperturbative treatment for strong light-matter interactions.
Active control of polariton-enabled long-range energy transfer.
Electrostatic nature of cavity-mediated interactions between low-energy matter excitations
Unconventional magnetism mediated by spin-phonon-photon coupling.
Fabry-Perot Resonances in Bilayer Metasurfaces.
General theory of cavity-mediated interactions between low-energy matter excitations.
Spontaneous Symmetry Breaking in Diffraction.
Author Correction: Magneto-optics in a van der Waals magnet tuned by self-hybridized polaritons.