Magnetization reversal of a ferromagnetic Pt/Co/Pt film by helicity dependent absorption of visible to near-infrared laser pulses

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Hauptverfasser: Yamada, Kihiro T., Davies, Carl S., Ando, Fuyuki, Li, Tian, Ono, Teruo, Rasing, Theo, Kimel, Alexey V., Kirilyuk, Andrei
Format: Preprint
Veröffentlicht: 2022
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author Yamada, Kihiro T.
Davies, Carl S.
Ando, Fuyuki
Li, Tian
Ono, Teruo
Rasing, Theo
Kimel, Alexey V.
Kirilyuk, Andrei
author_facet Yamada, Kihiro T.
Davies, Carl S.
Ando, Fuyuki
Li, Tian
Ono, Teruo
Rasing, Theo
Kimel, Alexey V.
Kirilyuk, Andrei
contents The practical difficulty in distinguishing the impact of magnetic circular dichroism and the inverse Faraday effect fuels intense debates over which mechanism predominantly drives the process of helicity dependent all-optical switching of magnetization in ferromagnets. Here, we quantitatively measure the efficiency of the switching process in a Pt/Co/Pt multilayered stack using visible- to near-infrared optical pulses. We find that the switching efficiency increases by a factor of 8.6 upon increasing the pumping wavelength from 0.5 $ μ$m to 1.1 $ μ$m, becoming 100 % efficient at even longer wavelengths up to 2.0 $ μ$m. Our experimental results can be successfully explained by the phenomenon of magnetic circular dichroism, making a significant step towards resolving the long-standing controversy over the origin of the all-optical process of magnetization reversal in ferromagnets.
format Preprint
id arxiv_https___arxiv_org_abs_2201_01141
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Magnetization reversal of a ferromagnetic Pt/Co/Pt film by helicity dependent absorption of visible to near-infrared laser pulses
Yamada, Kihiro T.
Davies, Carl S.
Ando, Fuyuki
Li, Tian
Ono, Teruo
Rasing, Theo
Kimel, Alexey V.
Kirilyuk, Andrei
Materials Science
The practical difficulty in distinguishing the impact of magnetic circular dichroism and the inverse Faraday effect fuels intense debates over which mechanism predominantly drives the process of helicity dependent all-optical switching of magnetization in ferromagnets. Here, we quantitatively measure the efficiency of the switching process in a Pt/Co/Pt multilayered stack using visible- to near-infrared optical pulses. We find that the switching efficiency increases by a factor of 8.6 upon increasing the pumping wavelength from 0.5 $ μ$m to 1.1 $ μ$m, becoming 100 % efficient at even longer wavelengths up to 2.0 $ μ$m. Our experimental results can be successfully explained by the phenomenon of magnetic circular dichroism, making a significant step towards resolving the long-standing controversy over the origin of the all-optical process of magnetization reversal in ferromagnets.
title Magnetization reversal of a ferromagnetic Pt/Co/Pt film by helicity dependent absorption of visible to near-infrared laser pulses
topic Materials Science
url https://arxiv.org/abs/2201.01141