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- W2015280280 abstract "Thermally excited spin waves in thin Co91-Zr9 sputtered films have been studied at room temperature by Brillouin scattering in external magnetic fields of up to 3.5 kOe. In order to precisely determine the g factor and the surface exchange constant, we extensively studied the Damon–Eshbach mode in a 1-μm-thick film. From the slope of the surface magnon frequency in an external magnetic field, the g factor of 2.17±0.04 is determined. The surface exchange stiffness constant Ds has been determined by examining the surface wave-vector dependence on the surface magnon frequency. We obtained a value of Ds =6.9±2.0×10−9 Oe cm2. The best way to determine the bulk stiffness constant is to observe the standing spin waves excited in a thin film whose thickness is less than 200 nm. We could observe scattering from the standing spin waves of up to a third order in a film of 85±5 nm thick. The bulk exchange stiffness constant Db of 2.2±0.4×10−9 Oe cm2 is obtained from the external field dependence of the standing spin-wave frequencies." @default.
- W2015280280 created "2016-06-24" @default.
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- W2015280280 date "1989-07-01" @default.
- W2015280280 modified "2023-09-27" @default.
- W2015280280 title "Brillouin scattering from spin waves in sputtered Co-Zr films" @default.
- W2015280280 cites W1967707579 @default.
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- W2015280280 doi "https://doi.org/10.1063/1.343878" @default.
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