Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (15/15 displayed)

  • 2022Low‐Damping Spin‐Wave Transmission in YIG/Pt‐Interfaced Structures16citations
  • 2022Iron oxide-Palladium core-shell nanospheres for ferromagnetic resonance-based hydrogen gas sensing6citations
  • 2022Application of a Microfabricated Microwave Resonator in a Co-Pd-Based Magnetic Hydrogen-Gas Sensor3citations
  • 2020Manipulation of the inverse spin Hall effect in palladium by absorption of hydrogen gas11citations
  • 2020Spin-wave relaxation by Eddy Currents in Y3Fe5 O12/Pt bilayers and a way to suppress it17citations
  • 2019Observation of enhanced magnetic anisotropy in PLD YIG thin film on GGG (1 1 1) substrate12citations
  • 2018Cavity magnon polaritons with lithium ferrite and three-dimensional microwave resonators at millikelvin temperatures33citations
  • 2018Effect of Annealing on the Structural and FMR Properties of Epitaxial YIG Thin Films Grown by RF Magnetron Sputtering12citations
  • 2016Elastic versus inelastic spin-polarized electron scattering from a ferromagnetic surface3citations
  • 2015Rigorous numerical study of strong microwave photon-magnon coupling in all-dielectric magnetic multilayers12citations
  • 2014Microwave eddy-current shielding effect in metallic films and periodic nanostructures of sub-skin-depth thicknesses and its impact on stripline ferromagnetic resonance spectroscopy35citations
  • 2013Non-reciprocity of dipole-exchange spin waves in thin ferromagnetic films58citations
  • 2009A current-controlled, dynamic magnonic crystal179citations
  • 2008Brillouin light scattering observation of the transition from the superparamagnetic to the superferromagnetic state in nanogranular, (SiO 2)Co films18citations
  • 2008Spin-wave modes in granular superferromagnetic (SiO2)Co/GaAs films observed using Brillouin light scattering9citations

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Chart of shared publication
Serha, Rostyslav O.
2 / 4 shared
Bozhko, Dmytro A.
2 / 3 shared
Vasyuchka, Vitaliy I.
2 / 2 shared
Serga, Alexander A.
2 / 4 shared
Agrawal, Milan
1 / 1 shared
Verba, Roman V.
2 / 3 shared
Hillebrands, Burkard
2 / 7 shared
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1 / 1 shared
Rahman, Rezoan
1 / 1 shared
Cortie, David
1 / 4 shared
Martyniuk, Mariusz
2 / 16 shared
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1 / 2 shared
Iyer, K. Swaminathan
1 / 5 shared
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Lindner, Jürgen
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Hellwig, Olav
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Narkowicz, Ryszard
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1 / 4 shared
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1 / 6 shared
Lenz, Kilian
1 / 2 shared
Schefer, Thomas
1 / 2 shared
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1 / 1 shared
Bunyaev, Sergey A.
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Kreil, Alexander J. E.
1 / 1 shared
Frey, Pascal
1 / 1 shared
Kakazei, Gleb N.
1 / 4 shared
Musiienko-Shmarova, Halyna Yu
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Venkataramani, N.
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Bhoi, Biswanath
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Aiyar, R. P. R. C.
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Samajdar, I.
1 / 3 shared
Tobar, Michael
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1 / 6 shared
Watt, S.
1 / 1 shared
Venkataramani, Narayanan
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Artamonov, Oleg M.
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1 / 9 shared
Williams, Jim
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Nam, Donghee
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Neumann, T.
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Stashkevich, A. A.
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Stognij, A. I.
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Belotelov, V.
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Wurtz, G. A.
2 / 4 shared
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Lutsev, L. V.
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Billet, D.
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Novitskii, N. N.
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2020
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2015
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Co-Authors (by relevance)

  • Serha, Rostyslav O.
  • Bozhko, Dmytro A.
  • Vasyuchka, Vitaliy I.
  • Serga, Alexander A.
  • Agrawal, Milan
  • Verba, Roman V.
  • Hillebrands, Burkard
  • Bake, Abdulhakim
  • Rahman, Rezoan
  • Cortie, David
  • Martyniuk, Mariusz
  • Khan, Shahbaz
  • Iyer, K. Swaminathan
  • Lawler, Nicholas
  • Lindner, Jürgen
  • Hellwig, Olav
  • Narkowicz, Ryszard
  • Roberts, Malcolm P.
  • Ganss, Fabian
  • Lenz, Kilian
  • Schefer, Thomas
  • Watt, Stuart
  • Bunyaev, Sergey A.
  • Kreil, Alexander J. E.
  • Frey, Pascal
  • Kakazei, Gleb N.
  • Musiienko-Shmarova, Halyna Yu
  • Venkataramani, N.
  • Bhoi, Biswanath
  • Aiyar, R. P. R. C.
  • Kumar, Gulshan
  • Prasad, Shiva
  • Samajdar, I.
  • Tobar, Michael
  • Bourhill, Jeremy
  • Watt, S.
  • Venkataramani, Narayanan
  • Aiyar, Ramnath P. R. C.
  • Artamonov, Oleg M.
  • Baraban, Alexander P.
  • Berakdar, Jamal
  • Samarin, Sergey
  • Williams, Jim
  • Hutomo, Jessica
  • Nam, Donghee
  • Maksymov, Ivan
  • Serga, A. A.
  • Hillebrands, B.
  • Chumak, A. V.
  • Neumann, T.
  • Viau, G.
  • Stashkevich, A. A.
  • Gautrot, S.
  • Stognij, A. I.
  • Zayats, A. V.
  • Djemia, P.
  • Belotelov, V.
  • Roussigne, Y.
  • Wurtz, G. A.
  • Chaboussant, G.
  • Lutsev, L. V.
  • Billet, D.
  • Ott, F.
  • Novitskii, N. N.
OrganizationsLocationPeople

article

Non-reciprocity of dipole-exchange spin waves in thin ferromagnetic films

  • Kostylev, Mikhail
Abstract

The non-reciprocity and asymmetry of the modal profiles for dipole-exchange spin waves have been investigated theoretically. We were interested in the most important case for applications: the waves propagating in in-plane magnetized ferromagnetic films at a right angle to the applied magnetic field. For large-magnetic moment ferromagnetic metallic films with typical thicknesses 10-60 nm which are largely considered promising for magnonic and spintronic applications, the contribution of exchange energy to the total magnetic energy is important; however, their dynamics is most often treated using the exchange-free Damon-Eschbach approach. In this work, we show that although this approach is valid for treatment of wave dispersion, it fails to properly describe such fundamental property of wave excitations as wave modal profiles. Namely we show that the fundamental mode of the dipole-exchange spectrum is localized at the film surface opposite to the surface of localization of the exchange-free Damon-Eshbach surface wave. This "anomalous" localization of the wave does not affect the non-reciprocity of spin wave excitation by microstrip and coplanar transducers but may be detected in other types of experiments. © 2013 American Institute of Physics.

Topics
  • impedance spectroscopy
  • dispersion
  • surface
  • experiment