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- W2012034923 abstract "Expressions for both the orbital and spin contributions to the dynamic susceptibility are derived using the Shaw-Harrison model wavefunction transformation. For the Heine-Abarenkov-type transition-metal model potential, they are separated into two parts; one caused by the non-nodal character of the model wavefunction and other by the depletion hole around the ion core. The formalism is applicable to d and non-d band metals depending upon the choice of the model potential. Numerical results are presented for simple, noble and transition metals at various values of momentum and energy transfer. Al, Cu and V are chosen to be the metals used in the present investigations. The depletion-hole contribution is found to be of the same order of magnitude as the contribution of the smooth part. It is noticed that the structural features of the magnetic susceptibility are dominated by the spin response rather than by the orbital response. The orbital susceptibility as a whole is found to be about 10-80% that of the spin susceptibility except at very small momentum transfer where it dominates over the spin susceptibility. Therefore it is emphasised that the orbital contribution cannot justifiably be neglected when comparing the results with experimental measurements. The diamagnetic behaviour dominates in Cu and Al while the paramagnetic behaviour dominates in V." @default.
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- W2012034923 date "1980-06-01" @default.
- W2012034923 modified "2023-09-26" @default.
- W2012034923 title "Model potential theory of the dynamic susceptibility of metals: application to vanadium, copper and aluminium" @default.
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- W2012034923 doi "https://doi.org/10.1088/0305-4608/10/6/023" @default.
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