Quantized Toroidal Waves on Ferrotoroidal Magnets

Fuente: arXiv
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Main Authors: Bernal, Maximiliano, Saez, Guidobeth, Espinoza, Tomás P., Troncoso, Roberto E., Nunez, Alvaro S.
Format: Preprint
Published: 2024
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author Bernal, Maximiliano
Saez, Guidobeth
Espinoza, Tomás P.
Troncoso, Roberto E.
Nunez, Alvaro S.
author_facet Bernal, Maximiliano
Saez, Guidobeth
Espinoza, Tomás P.
Troncoso, Roberto E.
Nunez, Alvaro S.
contents Magnetic-ferroic ordering and magnetic-toroidal moments are essential concepts in molecular electronics and magnetics. The magnetic toroidal moment is critical in understanding new electronic states and their possible uses. This paper discusses the notion of toroidicity waves. In particular, we present a one-dimensional model of interconnected toroidicity leading to an organization principle around an emergent quantum particle, a carrier of toroidicity waves, dubbed the toroidon. We illustrate some functionalities that could be achieved once control over the toroidon is acquired. We show that a 1D dimerized and antiferromagnetic-like spin chain can display ferrotoroidicity and propose its description in terms of an effective quasi-1D spin chain, marking a crucial step towards further research on the phenomena and potential applications of ferrotoroids.
format Preprint
id arxiv_https___arxiv_org_abs_2412_08888
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Quantized Toroidal Waves on Ferrotoroidal Magnets
Bernal, Maximiliano
Saez, Guidobeth
Espinoza, Tomás P.
Troncoso, Roberto E.
Nunez, Alvaro S.
Mesoscale and Nanoscale Physics
Materials Science
Magnetic-ferroic ordering and magnetic-toroidal moments are essential concepts in molecular electronics and magnetics. The magnetic toroidal moment is critical in understanding new electronic states and their possible uses. This paper discusses the notion of toroidicity waves. In particular, we present a one-dimensional model of interconnected toroidicity leading to an organization principle around an emergent quantum particle, a carrier of toroidicity waves, dubbed the toroidon. We illustrate some functionalities that could be achieved once control over the toroidon is acquired. We show that a 1D dimerized and antiferromagnetic-like spin chain can display ferrotoroidicity and propose its description in terms of an effective quasi-1D spin chain, marking a crucial step towards further research on the phenomena and potential applications of ferrotoroids.
title Quantized Toroidal Waves on Ferrotoroidal Magnets
topic Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2412.08888