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Transient Non-Collinear Magnetic State for All-Optical Magnetization Switching.
Parchenko, Sergii; Frej, Antoni; Ueda, Hiroki; Carley, Robert; Mercadier, Laurent; Gerasimova, Natalia; Mercurio, Giuseppe; Schlappa, Justine; Yaroslavtsev, Alexander; Agarwal, Naman; Gort, Rafael; Scherz, Andreas; Zvezdin, Anatoly; Stupakiewicz, Andrzej; Staub, Urs.
Afiliação
  • Parchenko S; Laboratory for Mesoscopic Systems, Department of Materials, ETH Zurich, Zurich, 8093, Switzerland.
  • Frej A; Laboratory for Multiscale Materials Experiments, Paul Scherrer Institute, Villigen PSI, 5232, Switzerland.
  • Ueda H; European XFEL, Holzkoppel 4, 22869, Schenefeld, Germany.
  • Carley R; Faculty of Physics, University of Bialystok, 1L Ciolkowskiego, Bialystok, 15-245, Poland.
  • Mercadier L; Swiss Light Source, Paul Scherrer Institute, Villigen, 5232, Switzerland.
  • Gerasimova N; SwissFEL, Paul Scherrer Institut, Villigen, 5232, Switzerland.
  • Mercurio G; European XFEL, Holzkoppel 4, 22869, Schenefeld, Germany.
  • Schlappa J; European XFEL, Holzkoppel 4, 22869, Schenefeld, Germany.
  • Yaroslavtsev A; European XFEL, Holzkoppel 4, 22869, Schenefeld, Germany.
  • Agarwal N; European XFEL, Holzkoppel 4, 22869, Schenefeld, Germany.
  • Gort R; European XFEL, Holzkoppel 4, 22869, Schenefeld, Germany.
  • Scherz A; European XFEL, Holzkoppel 4, 22869, Schenefeld, Germany.
  • Zvezdin A; European XFEL, Holzkoppel 4, 22869, Schenefeld, Germany.
  • Stupakiewicz A; Department of Physics and Astronomy, Aarhus University, Aarhus, 8000, Denmark.
  • Staub U; European XFEL, Holzkoppel 4, 22869, Schenefeld, Germany.
Adv Sci (Weinh) ; 10(36): e2302550, 2023 Dec.
Article em En | MEDLINE | ID: mdl-37939279
Resonant absorption of a photon by bound electrons in a solid can promote an electron to another orbital state or transfer it to a neighboring atomic site. Such a transition in a magnetically ordered material could affect the magnetic order. While this process is an obvious road map for optical control of magnetization, experimental demonstration of such a process remains challenging. Exciting a significant fraction of magnetic ions requires a very intense incoming light beam, as orbital resonances are often weak compared to above-band-gap excitations. In the latter case, a sizeable reduction of the magnetization occurs as the absorbed energy increases the spin temperature, masking the non-thermal optical effects. Here, using ultrafast X-ray spectroscopy, this work is able to resolve changes in the magnetization state induced by resonant absorption of infrared photons in Co-doped yttrium iron garnet, with negligible thermal effects. This work finds that the optical excitation of the Co ions affects the two distinct magnetic Fe sublattices differently, resulting in a transient non-collinear magnetic state. The present results indicate that the all-optical magnetization switching (AOS) most likely occurs due to the creation of a transient, non-collinear magnetic state followed by coherent spin rotations of the Fe moments.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article