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- W2899390436 abstract "Abstract We analyze the scattering and ballistic transport of spin waves (SW) of Fe/Co leads across iron-nickel alloy nanojunctions, for different nanojunction nickel concentrations. The analytical and numerical analysis is developed for variable thicknesses n of the (100) atomic layers of the homogeneous Fe-Ni alloy nanojunctions, where 1 ≤ n ≤ 7. The ordered magnetic states are treated in the virtual crystal approximation (VCA) and computed using the Ising EFT-MFT method. The spin dynamics and the SW scattering at the nanojunctions are examined by implementing the phase field matching theory (PFMT) for the Heisenberg Hamiltonian. Ballistic coherent reflection and transmission probabilities of the SWs incident from the Fe/Co leads onto the nanojunctions, are calculated using the Landauer-Buttiker formalism. Resonance assisted maxima of the ballistic SW transmission spectra are also along various directions of the Brillouin zone. The characteristics of these maxima can be modified by varying several factors including the nanojunction thickness, the number of layers, the propagation path, the alloy concentrations and temperature." @default.
- W2899390436 created "2018-11-09" @default.
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- W2899390436 date "2018-12-01" @default.
- W2899390436 modified "2023-09-23" @default.
- W2899390436 title "Magnonic ballistic transport across Fe-Ni alloy nanojunctions between Fe/Co leads using Phase Field Matching and Ising Effective Field Theory approaches" @default.
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- W2899390436 doi "https://doi.org/10.1016/j.mtla.2018.10.012" @default.
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