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A UHV MOKE magnetometer complementing XMCD-PEEM at the Elettra Synchrotron

We report on a custom-built UHV-compatible Magneto-Optical Kerr Effect (MOKE) magnetometer for applications in surface and materials sciences, operating in tandem with the PhotoEmission Electron Microscope (PEEM) endstation at the Nanospectroscopy beamline of the Elettra synchrotron. The magnetomete...

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Autores principales: Genuzio, Francesca, Giela, Tomasz, Lucian, Matteo, Menteş, Tevfik Onur, Brondin, Carlo Alberto, Cautero, Giuseppe, Mazalski, Piotr, Bonetti, Stefano, Korecki, Jozef, Locatelli, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8127370/
https://www.ncbi.nlm.nih.gov/pubmed/33950008
http://dx.doi.org/10.1107/S1600577521002885
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author Genuzio, Francesca
Giela, Tomasz
Lucian, Matteo
Menteş, Tevfik Onur
Brondin, Carlo Alberto
Cautero, Giuseppe
Mazalski, Piotr
Bonetti, Stefano
Korecki, Jozef
Locatelli, Andrea
author_facet Genuzio, Francesca
Giela, Tomasz
Lucian, Matteo
Menteş, Tevfik Onur
Brondin, Carlo Alberto
Cautero, Giuseppe
Mazalski, Piotr
Bonetti, Stefano
Korecki, Jozef
Locatelli, Andrea
author_sort Genuzio, Francesca
collection PubMed
description We report on a custom-built UHV-compatible Magneto-Optical Kerr Effect (MOKE) magnetometer for applications in surface and materials sciences, operating in tandem with the PhotoEmission Electron Microscope (PEEM) endstation at the Nanospectroscopy beamline of the Elettra synchrotron. The magnetometer features a liquid-nitrogen-cooled electromagnet that is fully compatible with UHV operation and produces magnetic fields up to about 140 mT at the sample. Longitudinal and polar MOKE measurement geometries are realized. The magneto-optical detection is based on polarization analysis using a photoelastic modulator. The sample manipulation system is fully compatible with that of the PEEM, making it possible to exchange samples with the beamline endstation, where complementary X-ray imaging and spectroscopy techniques are available. The magnetometer performance is illustrated by experiments on cobalt ultra-thin films, demonstrating close to monolayer sensitivity. The advantages of combining in situ growth, X-ray Magnetic Circular Dichroism imaging (XMCD-PEEM) and MOKE magnetometry into a versatile multitechnique facility are highlighted.
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spelling pubmed-81273702021-06-14 A UHV MOKE magnetometer complementing XMCD-PEEM at the Elettra Synchrotron Genuzio, Francesca Giela, Tomasz Lucian, Matteo Menteş, Tevfik Onur Brondin, Carlo Alberto Cautero, Giuseppe Mazalski, Piotr Bonetti, Stefano Korecki, Jozef Locatelli, Andrea J Synchrotron Radiat Beamlines We report on a custom-built UHV-compatible Magneto-Optical Kerr Effect (MOKE) magnetometer for applications in surface and materials sciences, operating in tandem with the PhotoEmission Electron Microscope (PEEM) endstation at the Nanospectroscopy beamline of the Elettra synchrotron. The magnetometer features a liquid-nitrogen-cooled electromagnet that is fully compatible with UHV operation and produces magnetic fields up to about 140 mT at the sample. Longitudinal and polar MOKE measurement geometries are realized. The magneto-optical detection is based on polarization analysis using a photoelastic modulator. The sample manipulation system is fully compatible with that of the PEEM, making it possible to exchange samples with the beamline endstation, where complementary X-ray imaging and spectroscopy techniques are available. The magnetometer performance is illustrated by experiments on cobalt ultra-thin films, demonstrating close to monolayer sensitivity. The advantages of combining in situ growth, X-ray Magnetic Circular Dichroism imaging (XMCD-PEEM) and MOKE magnetometry into a versatile multitechnique facility are highlighted. International Union of Crystallography 2021-03-30 /pmc/articles/PMC8127370/ /pubmed/33950008 http://dx.doi.org/10.1107/S1600577521002885 Text en © Francesca Genuzio et al. 2021 https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Beamlines
Genuzio, Francesca
Giela, Tomasz
Lucian, Matteo
Menteş, Tevfik Onur
Brondin, Carlo Alberto
Cautero, Giuseppe
Mazalski, Piotr
Bonetti, Stefano
Korecki, Jozef
Locatelli, Andrea
A UHV MOKE magnetometer complementing XMCD-PEEM at the Elettra Synchrotron
title A UHV MOKE magnetometer complementing XMCD-PEEM at the Elettra Synchrotron
title_full A UHV MOKE magnetometer complementing XMCD-PEEM at the Elettra Synchrotron
title_fullStr A UHV MOKE magnetometer complementing XMCD-PEEM at the Elettra Synchrotron
title_full_unstemmed A UHV MOKE magnetometer complementing XMCD-PEEM at the Elettra Synchrotron
title_short A UHV MOKE magnetometer complementing XMCD-PEEM at the Elettra Synchrotron
title_sort uhv moke magnetometer complementing xmcd-peem at the elettra synchrotron
topic Beamlines
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8127370/
https://www.ncbi.nlm.nih.gov/pubmed/33950008
http://dx.doi.org/10.1107/S1600577521002885
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