Area of research
Atomic and Molecular Physics, and Optics · Electrical and Electronic Engineering
Research interest
Research interests include Photonic Crystals and Applications, Photonic and Optical Devices, Plasmonic and Surface Plasmon Research, and Optical Coatings and Gratings.
Nonlocality in photonic materials and metamaterials: roadmap
Relativistic electron energy-loss spectroscopy in cylindrical waveguides and holes
Electron beams traversing spherical nanoparticles: Analytic and numerical treatment
Spectroscopic Study of the Excitonic Structure in Monolayer MoS<sub>2</sub> under Multivariate Physical and Chemical Stimuli
The Effect of Nanoparticle Composition on the Surface-Enhanced Raman Scattering Performance of Plasmonic DNA Origami Nanoantennas
Halevi's extension of the Euler-Drude model for plasmonic systems
Optical convolutional neural network with atomic nonlinearity
Time-domain modeling of interband transitions in plasmonic systems
High-accuracy Casimir-Polder force calculations using the Discontinuous Galerkin Time-Domain method
Coherent dimension reduction with integrated photonic circuits exploiting tailored disorder
Linear response theory of open systems with exceptional points
Wading through the void: Exploring quantum friction and nonequilibrium fluctuations
Nanostructured In <sub>3</sub> SbTe <sub>2</sub> antennas enable switching from sharp dielectric to broad plasmonic resonances
Electromagnetic viscosity in complex structured environments: From blackbody to quantum friction
Surface roughness in finite-element meshes: application to plasmonic nanostructures
Two-particle tight-binding description of higher-harmonic generation in semiconductor nanostructures
Uniform optical gain as a non-Hermitian control knob
Resolvent expansion for discrete non-Hermitian resonant systems [Invited]
Tailored Disorder in Photonics: Learning from Nature
Topological protection versus degree of entanglement of two-photon light in photonic topological insulators
Enhanced Faraday rotation by dielectric metasurfaces with Bayesian shape-optimized scatterers
Additive splitting methods for parallel solutions of evolution problems
Waveguide‐Integrated Broadband Spectrometer Based on Tailored Disorder
On the applicability of quantum-optical concepts in strong-coupling nanophotonics
Technical University of Denmark, DTU Orbit (Technical University of Denmark, DTU) 2020cited by 75position: middle
Broadband Spectrometer with Single-Photon Sensitivity Exploiting Tailored Disorder
Nonequilibrium thermodynamics of quantum friction
Composition analysis and transition energies of ultrathin Sn-rich GeSn quantum wells
Nonadditive Enhancement of Nonequilibrium Atom-Surface Interactions
Importance of substrates for the visibility of "dark" plasmonic modes
Quantum thermodynamics of overdamped modes in local and spatially dispersive materials