Pages that link to "Item:Q2311624"
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The following pages link to Simulation of three-dimensional nanoscale light interaction with spatially dispersive metals using a high order curvilinear DGTD method (Q2311624):
Displaying 15 items.
- Theoretical and numerical analysis of a non-local dispersion model for light interaction with metallic nanostructures (Q521236) (← links)
- Numerical simulation of a coupled system of Maxwell equations and a gas dynamic model (Q778335) (← links)
- High order DGTD solver for the numerical modeling of nanoscale light/matter interaction (Q1696667) (← links)
- A non-intrusive model order reduction approach for parameterized time-domain Maxwell's equations (Q2083308) (← links)
- A Riesz-projection-based method for nonlinear eigenvalue problems (Q2125446) (← links)
- Stability and asymptotic properties of a linearized hydrodynamic medium model for dispersive media in nanophotonics (Q2192523) (← links)
- Simulating 3D periodic structures at oblique incidences with discontinuous Galerkin time-domain methods: theoretical and practical considerations (Q2287383) (← links)
- A 3D curvilinear discontinuous Galerkin time-domain solver for nanoscale light-matter interactions (Q2352296) (← links)
- A DGTD method for the numerical modeling of the interaction of light with nanometer scale metallic structures taking into account non-local dispersion effects (Q2375237) (← links)
- A parallel non-conforming multi-element DGTD method for the simulation of electromagnetic wave interaction with metallic nanoparticles (Q2517451) (← links)
- High-order DGTD methods for dispersive Maxwell's equations and modelling of silver nanowire coupling (Q3587724) (← links)
- Multiscale Approach and Analysis for Transient Simulation of Light Interaction With Nonlocal Metallic Nanostructure Arrays (Q4992264) (← links)
- Efficient Multiscale Algorithms for Simulating Nonlocal Optical Response of Metallic Nanostructure Arrays (Q5005008) (← links)
- Simulation of the interaction of light with <scp>3‐D</scp> metallic nanostructures using a proper orthogonal decomposition‐Galerkin reduced‐order discontinuous Galerkin time‐domain method (Q6064500) (← links)
- Nonlinear optics: physics, analysis, and numerics. Abstracts from the workshop held March 10--15, 2024 (Q6613416) (← links)