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Functionalization of micro-size garnet at the end of optical fiber for magneto-optical applications

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Functionalization of micro-size garnet at the end of optical fiber for magneto-optical applications. / Nadinov, Issatay; Kovalenko, Oleksandr; Rehspringer, Jean-Luc et al.
In: Optics Express, Vol. 32, No. 5, 7651, 26.02.2024.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

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Nadinov I, Kovalenko O, Rehspringer JL, Mager L. Functionalization of micro-size garnet at the end of optical fiber for magneto-optical applications. Optics Express. 2024 Feb 26;32(5):7651. Epub 2024 Feb 20. doi: 10.1364/oe.503864

Author

Nadinov, Issatay ; Kovalenko, Oleksandr ; Rehspringer, Jean-Luc et al. / Functionalization of micro-size garnet at the end of optical fiber for magneto-optical applications. In: Optics Express. 2024 ; Vol. 32, No. 5.

Bibtex

@article{c0116184fe0f4dc3a1e3719af4d48b08,
title = "Functionalization of micro-size garnet at the end of optical fiber for magneto-optical applications",
abstract = "We utilized a metal propionate solution to prepare polycrystalline bismuth-substituted yttrium iron garnets through the metal-organic decomposition process. After conducting thorough optimization, we successfully synthesized a garnet that exhibited a high magneto-optic response directly at the end of an optical fiber. A notable achievement of our work lies in the ability to restrict the size and position of the garnet to match the dimensions of the fiber's core. The functionalized fiber was integrated into a magneto-optical sensor setup, offering the flexibility to operate either in the Faraday rotation or magnetic circular dichroism mode.",
keywords = "Atomic and Molecular Physics, and Optics",
author = "Issatay Nadinov and Oleksandr Kovalenko and Jean-Luc Rehspringer and Lo{\"i}c Mager",
year = "2024",
month = feb,
day = "26",
doi = "10.1364/oe.503864",
language = "English",
volume = "32",
journal = "Optics Express",
issn = "1094-4087",
publisher = "Optical Society of American (OSA)",
number = "5",

}

RIS

TY - JOUR

T1 - Functionalization of micro-size garnet at the end of optical fiber for magneto-optical applications

AU - Nadinov, Issatay

AU - Kovalenko, Oleksandr

AU - Rehspringer, Jean-Luc

AU - Mager, Loïc

PY - 2024/2/26

Y1 - 2024/2/26

N2 - We utilized a metal propionate solution to prepare polycrystalline bismuth-substituted yttrium iron garnets through the metal-organic decomposition process. After conducting thorough optimization, we successfully synthesized a garnet that exhibited a high magneto-optic response directly at the end of an optical fiber. A notable achievement of our work lies in the ability to restrict the size and position of the garnet to match the dimensions of the fiber's core. The functionalized fiber was integrated into a magneto-optical sensor setup, offering the flexibility to operate either in the Faraday rotation or magnetic circular dichroism mode.

AB - We utilized a metal propionate solution to prepare polycrystalline bismuth-substituted yttrium iron garnets through the metal-organic decomposition process. After conducting thorough optimization, we successfully synthesized a garnet that exhibited a high magneto-optic response directly at the end of an optical fiber. A notable achievement of our work lies in the ability to restrict the size and position of the garnet to match the dimensions of the fiber's core. The functionalized fiber was integrated into a magneto-optical sensor setup, offering the flexibility to operate either in the Faraday rotation or magnetic circular dichroism mode.

KW - Atomic and Molecular Physics, and Optics

U2 - 10.1364/oe.503864

DO - 10.1364/oe.503864

M3 - Journal article

VL - 32

JO - Optics Express

JF - Optics Express

SN - 1094-4087

IS - 5

M1 - 7651

ER -