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Kurt Busch

Humboldt-Universität zu Berlin · DE
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.
h-index
53
citations
11,919
works
403
NIH funding
primary concept
email

Recent publications

Nonlocality in photonic materials and metamaterials: roadmap
Optical Materials Express 2025cited by 28position: middledoi
Relativistic electron energy-loss spectroscopy in cylindrical waveguides and holes
Physical review. B./Physical review. B 2025cited by 3position: middledoi
Electron beams traversing spherical nanoparticles: Analytic and numerical treatment
Physical Review Research 2024cited by 17position: middledoi
Spectroscopic Study of the Excitonic Structure in Monolayer MoS<sub>2</sub> under Multivariate Physical and Chemical Stimuli
physica status solidi (a) 2024cited by 1position: middledoi
The Effect of Nanoparticle Composition on the Surface-Enhanced Raman Scattering Performance of Plasmonic DNA Origami Nanoantennas
ACS Nano 2023cited by 39position: middledoi
Halevi's extension of the Euler-Drude model for plasmonic systems
Physical review. B./Physical review. B 2023cited by 16position: lastdoi
Optical convolutional neural network with atomic nonlinearity
Optics Express 2023cited by 12position: middledoi
Time-domain modeling of interband transitions in plasmonic systems
Applied Physics B 2023cited by 7position: lastdoi
High-accuracy Casimir-Polder force calculations using the Discontinuous Galerkin Time-Domain method
Physical review. B./Physical review. B 2023cited by 7position: lastdoi
Coherent dimension reduction with integrated photonic circuits exploiting tailored disorder
Journal of the Optical Society of America B 2023cited by 4position: middledoi
Linear response theory of open systems with exceptional points
Nature Communications 2022cited by 46position: middledoi
Wading through the void: Exploring quantum friction and nonequilibrium fluctuations
APL Photonics 2022cited by 33position: lastdoi
Nanostructured In <sub>3</sub> SbTe <sub>2</sub> antennas enable switching from sharp dielectric to broad plasmonic resonances
Nanophotonics 2022cited by 31position: middledoi
Electromagnetic viscosity in complex structured environments: From blackbody to quantum friction
Physical review. A/Physical review, A 2022cited by 12position: middledoi
Surface roughness in finite-element meshes: application to plasmonic nanostructures
Journal of the Optical Society of America B 2022cited by 7position: middledoi
Two-particle tight-binding description of higher-harmonic generation in semiconductor nanostructures
Physical review. B./Physical review. B 2022cited by 6position: lastdoi
Uniform optical gain as a non-Hermitian control knob
Physical Review Research 2022cited by 5position: middledoi
Resolvent expansion for discrete non-Hermitian resonant systems [Invited]
Optical Materials Express 2022cited by 5position: middledoi
Tailored Disorder in Photonics: Learning from Nature
Advanced Optical Materials 2021cited by 60position: middledoi
Topological protection versus degree of entanglement of two-photon light in photonic topological insulators
Nature Communications 2021cited by 37position: middledoi
Enhanced Faraday rotation by dielectric metasurfaces with Bayesian shape-optimized scatterers
Optics Letters 2021cited by 18position: lastdoi
Additive splitting methods for parallel solutions of evolution problems
Journal of Computational Physics 2021cited by 5position: middledoi
Waveguide‐Integrated Broadband Spectrometer Based on Tailored Disorder
Advanced Optical Materials 2020cited by 90position: middledoi
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
Nano Letters 2020cited by 54position: middledoi
Nonequilibrium thermodynamics of quantum friction
Physical review. A/Physical review, A 2020cited by 41position: middledoi
Composition analysis and transition energies of ultrathin Sn-rich GeSn quantum wells
Physical Review Materials 2020cited by 16position: middledoi
Nonadditive Enhancement of Nonequilibrium Atom-Surface Interactions
Physical Review Letters 2020cited by 15position: middledoi
Importance of substrates for the visibility of "dark" plasmonic modes
Optics Express 2020cited by 12position: middledoi
Quantum thermodynamics of overdamped modes in local and spatially dispersive materials
Physical review. A/Physical review, A 2020cited by 12position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

F. Intravaia · Humboldt-Universität zu Berlin17 papers (2015–2023)Christian Wolff · University of Technology Sydney10 papers (2013–2024)D. Reiche · Humboldt-Universität zu Berlin8 papers (2017–2022)Armando Pérez-Leija · Saint Louis University7 papers (2017–2021)N. Asger Mortensen · Hebrew University of Jerusalem6 papers (2018–2024) · 6 papers (2012–2015) · 6 papers (2012–2019)Christian Matyssek · Humboldt-Universität zu Berlin6 papers (2013–2016)T. Kiel · Humboldt-Universität zu Berlin6 papers (2015–2022)Philip Trøst Kristensen · NeoPhotonics (United States)5 papers (2019–2023) · 4 papers (2012–2015)Diego A. R. Dalvit · University of South Florida4 papers (2016–2019)Matthias Moeferdt · Humboldt-Universität zu Berlin4 papers (2013–2018)Torsten Wendav · Humboldt-Universität zu Berlin4 papers (2015–2020)Jörg Schulze · Friedrich-Alexander-Universität Erlangen-Nürnberg4 papers (2015–2020)Roberto de J. León‐Montiel · Universidad Nacional Autónoma de México4 papers (2017–2019)Giovanni Capellini · University of Glasgow4 papers (2015–2020)Inga Anita Fischer · University of Glasgow4 papers (2015–2020) · 4 papers (2012–2013) · 4 papers (2019–2023)