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- W1575407117 abstract "Abstract In several refractory body-centred cubic metals (α-Fe, V, Nb, Ta) the binding energy of positrons (e+) trapped in vacancies is too small to permit accurate determinations of the enthalpy of formation of monovacancies, HF1v, by high-temperature positron annihilation. Owing to their larger mass, trapped positive muons (m+) and π-mesons (π+) are much more firmly bound to vacancies. It is argued that the lattice steering (channelling or blocking) of their charged decay products (e+ or m+) allows us to obtain accurate HF1V values of the refractory bcc metals. In ferromagnets with high Curie temperatures TC, such as α-Fe, Co, and FeCo alloys, HF1V may also be deduced from muon spin rotation (m+SR) measurements. However, in Fe and Co this approach is limited by the strong sensitivity of the spontaneous magnetization against temperature fluctuations near TC. The reduction of this sensitivity in the so-called asymptotic critical regime by applying sufficiently strong external magnetic fields is investigat..." @default.
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- W1575407117 date "2002-10-01" @default.
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- W1575407117 title "Vacancies in thermal equilibrium and ferromagnetism near the Curie temperature" @default.
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- W1575407117 doi "https://doi.org/10.3139/146.021030" @default.
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