Physics of Modern Materials: Magnetic, electrical and optical properties of crystalline and amorphous materials and lectures presented at a Symposium on Classical Fluids at Trieste on 12 and 13 June 1978 |
Contents
Structure and cohesion of transition metals and alloys | 3 |
Metallic magnetism in rareearth alloys IAEASMR46110 | 55 |
Superconducting materials IAEASMR46111 | 111 |
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Common terms and phrases
absorption alloys amorphous amorphous metallic atoms average band structure behaviour calculations carriers centres charge compounds conduction band crystal field crystalline curve d-bands density dependence devices discussed disordered distribution doping dynamics effect electric field electro-optical electrons elements energy gap equation experiment experimental Fermi level ferromagnetic figure frequency GaAs Green's function hopping III-V impurity interaction laser lattice linear liquid metals magnetic moments magnetic ordering material mobility modulated structures molecular molecular dynamics n₁ n₂ neutron diffraction neutron scattering non-linear observed obtained optical p-n junction p-type parameter phase transitions phonon Phys polarization potential properties pulse radial distribution function rare-earth region sample semiconductor shown in Fig shows Solid specimens spin structure factor superconducting surface symmetry techniques theoretical theory thermal transition metals transition temperature valence valence band vector voltage wave function zero ΔΕ