Dynamic FMR and magneto-optical response of hydrogenated FCC phase Fe25Pd75 thin films and micro patterned devices

Fuente: arXiv
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Hauptverfasser: Khan, Shahbaz, Sarkar, Satyajit, Lawler, Nicolas B., Akbar, Ali, Anwar, Muhammad Sabieh, Martyniuk, Mariusz, Iyer, K. Swaminathan, Kostylev, Mikhail
Format: Preprint
Veröffentlicht: 2024
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author Khan, Shahbaz
Sarkar, Satyajit
Lawler, Nicolas B.
Akbar, Ali
Anwar, Muhammad Sabieh
Martyniuk, Mariusz
Iyer, K. Swaminathan
Kostylev, Mikhail
author_facet Khan, Shahbaz
Sarkar, Satyajit
Lawler, Nicolas B.
Akbar, Ali
Anwar, Muhammad Sabieh
Martyniuk, Mariusz
Iyer, K. Swaminathan
Kostylev, Mikhail
contents In this work, we investigate the effects of H2 on the physical properties of Fe25Pd75. Broadband ferromagnetic resonance (FMR) spectroscopy revealed a significant FMR peak shift induced by H2 absorption for the FCC phased Fe25Pd75. The peak shifted towards higher applied fields, which is contrary to what was previously observed for CoPd alloys. Additionally, we conducted structural and magneto-optical Kerr ellipsometric studies on the Fe25Pd75 film and performed density functional theory calculations to explore the electronic and magnetic properties in both hydrogenated and dehydrogenated states. In the final part of this study, we deposited a Fe25Pd75 layer on top of a microscopic coplanar transmission line and investigated the FMR response of the layer while driven by a microwave current in the coplanar line. We observed a large amplitude FMR response upon hydrogen absorption, as well as desorption rates when cycling between pure N2 and a mixture of 3% H2 + 97% N2.
format Preprint
id arxiv_https___arxiv_org_abs_2405_07753
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Dynamic FMR and magneto-optical response of hydrogenated FCC phase Fe25Pd75 thin films and micro patterned devices
Khan, Shahbaz
Sarkar, Satyajit
Lawler, Nicolas B.
Akbar, Ali
Anwar, Muhammad Sabieh
Martyniuk, Mariusz
Iyer, K. Swaminathan
Kostylev, Mikhail
Materials Science
Applied Physics
In this work, we investigate the effects of H2 on the physical properties of Fe25Pd75. Broadband ferromagnetic resonance (FMR) spectroscopy revealed a significant FMR peak shift induced by H2 absorption for the FCC phased Fe25Pd75. The peak shifted towards higher applied fields, which is contrary to what was previously observed for CoPd alloys. Additionally, we conducted structural and magneto-optical Kerr ellipsometric studies on the Fe25Pd75 film and performed density functional theory calculations to explore the electronic and magnetic properties in both hydrogenated and dehydrogenated states. In the final part of this study, we deposited a Fe25Pd75 layer on top of a microscopic coplanar transmission line and investigated the FMR response of the layer while driven by a microwave current in the coplanar line. We observed a large amplitude FMR response upon hydrogen absorption, as well as desorption rates when cycling between pure N2 and a mixture of 3% H2 + 97% N2.
title Dynamic FMR and magneto-optical response of hydrogenated FCC phase Fe25Pd75 thin films and micro patterned devices
topic Materials Science
Applied Physics
url https://arxiv.org/abs/2405.07753