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- W1600682555 endingPage "589" @default.
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- W1600682555 abstract "The chapter surveys information about lanthanide magnetism from both elastic and inelastic neutron scattering experiments. In a field as vast as this, there have inevitably had to be several omissions. The understanding of the physics of lanthanide magnetism, at a phenomenological level, is in a reasonably satisfactory state. Although a few uncertainties still remain, such as the magnitude of the anisotropic exchange (or effective exchange) between ions in the hamiltonian, the relative importance of higher order (for example, biquadratic) exchange terms or the best way to derive the spectrum of elementary excitations (magnon or magnetic exciton) when both anisotropy and exchange terms are present. The effect of interactions (exchange enhancement) among the conduction electrons themselves on the magnetic ordering on the crystal field and on the collective modes has not yet been investigated. Thus, if the conduction electrons play an active role rather than simply passively transmitting the indirect exchange between the 4f shells, it is expected that higher energy magnon branches associates with spin–fluctuations on the conduction electrons as well." @default.
- W1600682555 created "2016-06-24" @default.
- W1600682555 creator A5041853225 @default.
- W1600682555 date "1978-01-01" @default.
- W1600682555 modified "2023-09-28" @default.
- W1600682555 title "Chapter 7 Magnetic structures and inelastic neutron scattering: Metals, alloys and compounds" @default.
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