collaborators

5 papers

physics.comp-ph2026

OpenMUSTANC (MUltiple Scattering Theory At Nanoplasmonic Cavities): A MATLAB toolbox for the simulation of Plasmonic Sphere Aggregates

Xin Zheng, Christos Mystilidis, Christos Tserkezis +2

Mesoscopic physical models, including the Hydrodynamic Drude Model (HDM), the Generalized Nonlocal Optical Response (GNOR) Model, and the Surface Response Model (SRM), have been pr…

cond-mat.mes-hall2026

Structural Colours with Transition Metal Dichalcogenide Nanostructures

Ida Juliane Bundgaard, Catarina G. Ferreira, Yonas Lebsir +1

We introduce transition metal-dichalcogenide (TMD) nanostructures as a promising platform for the realisation of structural colours. Processing of semianalytically calculated refle…

physics.comp-ph2025

Overcoming Computational Bottlenecks in Quantum Hydrodynamics: A Volume-Based Integral Formalism

Christos Mystilidis, Christos Tserkezis, Guy A. E. Vandenbosch +2

Mesoscopic models of the optical response of metals have emerged as fundamental building blocks in quantum plasmonics, in principle overcoming the computational bottlenecks of ab i…

cond-mat.mes-hall2025

Theoretical investigation of two-dimensional semiconductor nanoribbons and nanoparticles for tailored light--matter interactions

Christian Nicolaisen Hansen, Line Jelver, Christos Tserkezis

We explore theoretically the optical response of two-dimensional (2D) materials patterned at the nanoscale into either arrays of ribbons along a planar surface or spherical particl…

physics.comp-ph2025

An S-matrix Formalism for the Nonclassical Optical Response of Plasmonic Sphere Aggregates

Xin Zheng, Christos Mystilidis, Christos Tserkezis +2

A computational method for the scattering of light by multiple nonclassical plasmonic nanospheres, each of which has multiple (non-)concentric dielectric or metallic layers, is pre…