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Topologically cloaked magnetic colloidal transport

Titelangaben

Rossi, Anna Maria ; Märker, Thomas ; Stuhlmüller, Nico C. X. ; Kuświk, Piotr ; Stobiecki, Feliks ; Urbaniak, Maciej ; Akhundzada, Sapida ; Vereijken, Arne J. ; Ehresmann, Arno ; de las Heras, Daniel ; Fischer, Thomas:
Topologically cloaked magnetic colloidal transport.
In: Nature Communications. Bd. 16 (2025) Heft 1 . - 1828.
ISSN 2041-1723
DOI: https://doi.org/10.1038/s41467-025-57004-4

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Link zum Volltext (externe URL): Volltext

Angaben zu Projekten

Projekttitel:
Offizieller Projekttitel
Projekt-ID
Topological transport of magnetic colloids on non-periodic patterns
531559581

Projektfinanzierung: Deutsche Forschungsgemeinschaft
Deutsche Forschungsgemeinschaft

Abstract

Cloaking is a method of making obstacles undetectable. Here we cloak unit cells of a magnetic pattern squeezed into an otherwise periodic pattern from a magnetically driven colloidal flow. We apply a time-periodic external magnetic field loop to an ensemble of paramagnetic colloidal particles on the deformed periodic magnetic pattern. There exist topological loops where the particles avoid to trespass the cloaked regions by robustly traveling around the cloak. Afterwards the ensemble of particles continues with a motion identical to the motion as if the distorted region were nonexistent and the ensemble would have trespassed the undeformed region. We construct the cloak by continuously squeezing new conformally mapped unit cells between those of the originally undeformed and periodic pattern. We find a cloaking/decloaking transition as a function of the size and shape of the newly squeezed-in region. A cloak is scalable to arbitrary size if the biholomorphic map from the undistorted periodic lattice to the region outside the cloak locally rotates by less than an angle of forty five degrees. The work generalizes cloaking from waves toward particles.

Weitere Angaben

Publikationsform: Artikel in einer Zeitschrift
Begutachteter Beitrag: Ja
Institutionen der Universität: Fakultäten > Fakultät für Mathematik, Physik und Informatik > Physikalisches Institut > Professur Experimentalphysik X > Professur Experimentalphysik X - Univ.-Prof. Dr. Thomas Fischer
Titel an der UBT entstanden: Ja
Themengebiete aus DDC: 500 Naturwissenschaften und Mathematik > 530 Physik
Eingestellt am: 24 Feb 2025 08:48
Letzte Änderung: 24 Feb 2025 08:48
URI: https://eref.uni-bayreuth.de/id/eprint/92509