Engineering new limits to magnetostriction through metastability in iron-gallium alloys
In this work, Meisenheimer et al. use careful epitaxial growth of FeGa thin films to achieve a metastable state with remarkably high magetostrictive coefficients. Materials with strong magnetostrictive properties are vital components in magnetoelectric multiferroic heterostructures, with considerabl...
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2021
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oai:doaj.org-article:8c6cd1eb3d274d8f928c53c003d336f82021-12-02T15:43:16ZEngineering new limits to magnetostriction through metastability in iron-gallium alloys10.1038/s41467-021-22793-x2041-1723https://doaj.org/article/8c6cd1eb3d274d8f928c53c003d336f82021-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-22793-xhttps://doaj.org/toc/2041-1723In this work, Meisenheimer et al. use careful epitaxial growth of FeGa thin films to achieve a metastable state with remarkably high magetostrictive coefficients. Materials with strong magnetostrictive properties are vital components in magnetoelectric multiferroic heterostructures, with considerable potential for use a variety of technologies.P. B. MeisenheimerR. A. SteinhardtS. H. SungL. D. WilliamsS. ZhuangM. E. NowakowskiS. NovakovM. M. TorunbalciB. PrasadC. J. ZollnerZ. WangN. M. DawleyJ. SchubertA. H. HunterS. ManipatruniD. E. NikonovI. A. YoungL. Q. ChenJ. BokorS. A. BhaveR. RameshJ.-M. HuE. KioupakisR. HovdenD. G. SchlomJ. T. HeronNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-8 (2021) |
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Science Q P. B. Meisenheimer R. A. Steinhardt S. H. Sung L. D. Williams S. Zhuang M. E. Nowakowski S. Novakov M. M. Torunbalci B. Prasad C. J. Zollner Z. Wang N. M. Dawley J. Schubert A. H. Hunter S. Manipatruni D. E. Nikonov I. A. Young L. Q. Chen J. Bokor S. A. Bhave R. Ramesh J.-M. Hu E. Kioupakis R. Hovden D. G. Schlom J. T. Heron Engineering new limits to magnetostriction through metastability in iron-gallium alloys |
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In this work, Meisenheimer et al. use careful epitaxial growth of FeGa thin films to achieve a metastable state with remarkably high magetostrictive coefficients. Materials with strong magnetostrictive properties are vital components in magnetoelectric multiferroic heterostructures, with considerable potential for use a variety of technologies. |
format |
article |
author |
P. B. Meisenheimer R. A. Steinhardt S. H. Sung L. D. Williams S. Zhuang M. E. Nowakowski S. Novakov M. M. Torunbalci B. Prasad C. J. Zollner Z. Wang N. M. Dawley J. Schubert A. H. Hunter S. Manipatruni D. E. Nikonov I. A. Young L. Q. Chen J. Bokor S. A. Bhave R. Ramesh J.-M. Hu E. Kioupakis R. Hovden D. G. Schlom J. T. Heron |
author_facet |
P. B. Meisenheimer R. A. Steinhardt S. H. Sung L. D. Williams S. Zhuang M. E. Nowakowski S. Novakov M. M. Torunbalci B. Prasad C. J. Zollner Z. Wang N. M. Dawley J. Schubert A. H. Hunter S. Manipatruni D. E. Nikonov I. A. Young L. Q. Chen J. Bokor S. A. Bhave R. Ramesh J.-M. Hu E. Kioupakis R. Hovden D. G. Schlom J. T. Heron |
author_sort |
P. B. Meisenheimer |
title |
Engineering new limits to magnetostriction through metastability in iron-gallium alloys |
title_short |
Engineering new limits to magnetostriction through metastability in iron-gallium alloys |
title_full |
Engineering new limits to magnetostriction through metastability in iron-gallium alloys |
title_fullStr |
Engineering new limits to magnetostriction through metastability in iron-gallium alloys |
title_full_unstemmed |
Engineering new limits to magnetostriction through metastability in iron-gallium alloys |
title_sort |
engineering new limits to magnetostriction through metastability in iron-gallium alloys |
publisher |
Nature Portfolio |
publishDate |
2021 |
url |
https://doaj.org/article/8c6cd1eb3d274d8f928c53c003d336f8 |
work_keys_str_mv |
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