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physics.optics2026

Analysis of the Topology of a Plasmonic Target-Skyrmion Texture

Alexander Neuhaus, Pascal Dreher, Philipp Gessler +5

The paper experimentally investigates plasmonic near-field textures that form alternating skyrmion and antiskyrmion patterns, using photoemission electron microscopy and vector pol…

physics.optics2026

Intrinsic plasmon canalization in the biaxial van der Waals crystal MoOCl

Farid Aghashirinov, Andrea Mancini, Lin Nan +4

Anisotropic polaritons in low-symmetry crystals allow for subwavelength confinement and directional routing of light. The most extreme form of such anisotropy arises at the topolog…

physics.optics2026

Phonon-polaritonic skyrmions: Transition from bubble- to Néel-type

Florian Mangold, Enrico Baù, Lin Nan +6

Optical skyrmions are members of the emerging topological branch of solid-state physics and photonics, allowing for control over topological light textures through light-matter int…

physics.optics2024

Spatio-temporal topology of plasmonic spin meron pairs revealed by polarimetric photo-emission microscopy

Pascal Dreher, Alexander Neuhaus, David Janoschka +6

Topology is the study of geometrical properties and spatial relations unaffected by continuous changes, and has become an important tool for understanding complex physical systems.…

physics.optics2024

Skyrmion Bag Robustness in Plasmonic Bilayer and Trilayer Moiré Superlattices

Julian Schwab, Florian Mangold, Bettina Frank +2

Twistronics is studied intensively in twisted 2D heterostructures and its extension to trilayer moiré structures has proven beneficial for the tunability of unconventional correla…

physics.optics2024

Plasmonic Twistronics: Discovery of Plasmonic Skyrmion Bags

Julian Schwab, Alexander Neuhaus, Pascal Dreher +9

The study of van der Waals heterostructures with an interlayer twist, known as "twistronics", has been instrumental in advancing contemporary condensed matter research. Most import…