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Theoretical Optics & Photonics
Institut für Physik - Humboldt-Universität zu Berlin and Max-Born-Institut
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Dan-Nha Huynh
Dan-Nha Huynh
Dr. Dan-Nha Huynh
Post Doc
3'207
+49 [30] 2093 - 7623
+49 [30] 2093 - 7643
dhuynh@physik.hu-berlin.de
Humboldt-University - Institute for Physics - TOP
Lise-Meitner-Haus
Newtonstrasse 15
12489
Berlin
Germany
Plasmonics
Method Development
Publications
Publications
Time-domain modeling of interband transitions in plasmonic systems
M. Pfeiffer, D. Huynh, G. Wegner, F. Intravaia, U. Peschel, and K. Busch (2024)
Applied Physics B 130:7
Halevi's extension of the Euler-Drude model for plasmonic systems
G. Wegner, D. Huynh, N.A. Mortensen, F. Intravaia, and K. Busch (2023)
Physical Review B 107:115425
Design study of random spectrometers for applications at optical frequencies
P. Varytis, D. Huynh, W. Hartmann, W. Pernice, and K. Busch (2018)
Optics Letters 43:3180
A slab waveguide source for discontinuous Galerkin time-domain methods
D. Huynh, P. Varytis, and K. Busch (2018)
Proceedings of SPIE 10688, Photonics for Solar Energy Systems VII, 106880V
Ultrafast three-wave-mixing in plasmonic nanostructures
D. Huynh, M. Moeferdt, C. Matyssek, C. Wolff, and K. Busch (2016)
Applied Physics B 122:139
People
Current teaching
Fundamentals of Optical Sciences
Laserphysik
Non-Hermitian Photonics
Newest publications
Breakdown of temporal-coupled-mode theory under multiple excitations with destructive interference
Tailoring the nonclassicality of light states via mode detuning in waveguide beam splitters
Electron beams traversing spherical nanoparticles: Analytic and numerical treatment
Time-domain modeling of interband transitions in plasmonic systems
High-accuracy Casimir-Polder force calculations using the Discontinuous Galerkin Time-Domain method
Theoretical Optics & Photonics
Department of Physics - HU zu Berlin
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