Bauer, Thomas; Davis, Timothy J.; Frank, Bettina; Dreher, Pascal; Janoschka, David; Meiler, Tim C.; Meyer zu Heringdorf, Frank; Kuipers, L.; Giessen, Harald:
Ultrafast Time Dynamics of Plasmonic Fractional Orbital Angular Momentum
In: ACS Photonics, Jg. 10 (2023), Heft 12, S. 4252 - 4258
2023Artikel/Aufsatz in ZeitschriftOA Hybrid
Physik (inkl. Astronomie)Fakultät für PhysikForschungszentren » Center for Nanointegration Duisburg-Essen (CENIDE)
Damit verbunden: 1 Publikation(en)
Titel in Englisch:
Ultrafast Time Dynamics of Plasmonic Fractional Orbital Angular Momentum
Autor*in:
Bauer, Thomas
ORCID
0000-0003-0887-4717ORCID iD
Sonstiges
korrespondierende*r Autor*in
;
Davis, Timothy J.
ORCID
0000-0002-7299-4900ORCID iD
;
Frank, Bettina;Dreher, PascalUDE
LSF ID
60601
ORCID
0000-0001-8975-1983ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Janoschka, DavidUDE
LSF ID
57798
ORCID
0000-0002-4311-330XORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
;
Meiler, Tim C.
ORCID
0000-0002-1270-6161ORCID iD
;
Meyer zu Heringdorf, FrankUDE
LSF ID
48700
ORCID
0000-0002-5878-2012ORCID iD
Sonstiges
der Hochschule zugeordnete*r Autor*in
korrespondierende*r Autor*in
;
Kuipers, L.
ORCID
0000-0003-0556-8167ORCID iD
Sonstiges
korrespondierende*r Autor*in
;
Giessen, Harald
ORCID
0000-0002-4270-3850ORCID iD
Sonstiges
korrespondierende*r Autor*in
Erscheinungsjahr:
2023
Open Access?:
OA Hybrid
Scopus ID
Sprache des Textes:
Englisch
Schlagwort, Thema:
plasmonic angular momentum; fractional orbital angular momentum; time-dynamics of 2D vortices; photoemission electron microscopy; near-field scanning optical microscopy
Ressourcentyp:
Text

Abstract in Englisch:

The creation and manipulation of optical vortices, both in free space and in two-dimensional systems such as surface plasmon polaritons (SPPs), has attracted widespread attention in nano-optics due to their robust topological structure. Coupled with strong spatial confinement in the case of SPPs, these plasmonic vortices and their underlying orbital angular momentum (OAM) have promise in novel light–matter interactions on the nanoscale with applications ranging from on-chip particle manipulation to tailored control of plasmonic quasiparticles. Until now, predominantly integer OAM values have been investigated. Here, we measure and analyze the time evolution of fractional OAM SPPs using time-resolved two-photon photoemission electron microscopy and near-field optical microscopy. We experimentally show the field’s complex rotational dynamics and observe the beating of integer OAM eigenmodes at fractional OAM excitations. With our ability to access the ultrafast time dynamics of the electric field, we can follow the buildup of the plasmonic fractional OAM during the interference of the converging surface plasmons. By adiabatically increasing the phase discontinuity at the excitation boundary, we track the total OAM, leading to plateaus around integer OAM values that arise from the interplay between intrinsic and extrinsic OAM.