Treatise on Materials Science and TechnologyHerbert Herman |
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Page 261
... distribution ABC and later on A'B'C ' . Decreasing the external field again to the value belonging to ABC will produce the distribution ABB " C ' , thus showing the history dependence of the flux distribution due to flux pinning . is ...
... distribution ABC and later on A'B'C ' . Decreasing the external field again to the value belonging to ABC will produce the distribution ABB " C ' , thus showing the history dependence of the flux distribution due to flux pinning . is ...
Page 268
... distribution ) . The maximum of the order parameter between the flux lines is proportional to ( 1 - B / B 。 2 ) ( de Gennes , 1966 ) , which explains the B dependence , since all interaction models should give an interaction ...
... distribution ) . The maximum of the order parameter between the flux lines is proportional to ( 1 - B / B 。 2 ) ( de Gennes , 1966 ) , which explains the B dependence , since all interaction models should give an interaction ...
Page 339
... distribution . Therefore , with either of these two approaches , one can obtain a picture of cation distribution in the garnets from their magnetization data . Magnetization data can be readily obtained in comparison to either X - ray ...
... distribution . Therefore , with either of these two approaches , one can obtain a picture of cation distribution in the garnets from their magnetization data . Magnetization data can be readily obtained in comparison to either X - ray ...
Contents
Epitaxial Interfaces | 3 |
Thin Films | 15 |
Semiinfinite Overgrowths | 37 |
Copyright | |
11 other sections not shown
Common terms and phrases
a-site alloy Amer anisotropy Appl approximation atoms average axis B₁ Bragg Bragg reflections c-sites calculated cations coefficients coherent compounds concentration configuration constant Cooper pairs curve Debye-Waller factor defect density dependence discussed displacement elastic electron energy epitaxial equation experimental factor ferrimagnetic field film flux lines function garnet garnet structure GdIG Geller IAEA impurity Inelastic Scattering interaction interface iron garnets k₁ lattice constant lattice parameter Lett magnetic magnetocrystalline anisotropy measured Merwe method misfit misfit dislocations mode neutron scattering normal obtained overgrowth phase phonon Phys plane potential Proc properties rare earth rare earth ions reciprocal lattice resolution sample scattering cross section shown in Fig single crystal small angle solid strain stress sublattice substrate superconducting surface symmetry Table temperature tetrahedral thermal thickness transition metal values vector X-ray YGaG