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Main Authors: Lei, Shu-guo, Huang, Cheng-ping
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2510.22245
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author Lei, Shu-guo
Huang, Cheng-ping
author_facet Lei, Shu-guo
Huang, Cheng-ping
contents The Cotton-Mouton (CM) effect, referring to linear birefringence induced by a magnetic field, is usually very weak in natural materials. We propose theoretically that a giant CM effect may be achieved in the THz region with the suspension of iron nanorods. The unusual effect stems from the dual nature of the iron nanorods, which exhibit both ferromagnetic and plasmonic characteristics. Our results suggest that, with an ultralow magnetic field of 20 mT, a large linear birefringence up to 0.10 can be realized. The CM coefficient attains 2.2*10 7 T-2m-1, four orders of magnitude larger than that obtained currently in optical range. The results may advance the study and applications of the THz CM effect in artificial magneto-optic materials.
format Preprint
id arxiv_https___arxiv_org_abs_2510_22245
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Giant Cotton-Mouton effect of suspensions of iron nanorods
Lei, Shu-guo
Huang, Cheng-ping
Optics
The Cotton-Mouton (CM) effect, referring to linear birefringence induced by a magnetic field, is usually very weak in natural materials. We propose theoretically that a giant CM effect may be achieved in the THz region with the suspension of iron nanorods. The unusual effect stems from the dual nature of the iron nanorods, which exhibit both ferromagnetic and plasmonic characteristics. Our results suggest that, with an ultralow magnetic field of 20 mT, a large linear birefringence up to 0.10 can be realized. The CM coefficient attains 2.2*10 7 T-2m-1, four orders of magnitude larger than that obtained currently in optical range. The results may advance the study and applications of the THz CM effect in artificial magneto-optic materials.
title Giant Cotton-Mouton effect of suspensions of iron nanorods
topic Optics
url https://arxiv.org/abs/2510.22245