Treatise on Materials Science and TechnologyHerbert Herman |
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Page 17
... Deformation of a unit rectangular overgrowth atomic mesh from which the strains may be derived . When uniform lateral strains ē¡ = ( 5¡ — b¡ ) / b¡ , i = x , y ( 3.5 ) ( 3.6 ) are superimposed on the periodic strains of the dislocations ...
... Deformation of a unit rectangular overgrowth atomic mesh from which the strains may be derived . When uniform lateral strains ē¡ = ( 5¡ — b¡ ) / b¡ , i = x , y ( 3.5 ) ( 3.6 ) are superimposed on the periodic strains of the dislocations ...
Page 259
... deformation , such as compression or shear . In other words , the flux line lattice has finite elastic constants . It is difficult to calculate the elastic constants from the Ginzburg- Landau theory . However , two can be directly ...
... deformation , such as compression or shear . In other words , the flux line lattice has finite elastic constants . It is difficult to calculate the elastic constants from the Ginzburg- Landau theory . However , two can be directly ...
Page 347
... deformation in a magnetized body . When the specimen is magnetized to saturation , the saturation magnetostrictions along the < 100 ) and ( 111 ) directions are denoted by 100 > and < 111 ) PHYSICAL AND CHEMICAL PROPERTIES OF GARNETS 347.
... deformation in a magnetized body . When the specimen is magnetized to saturation , the saturation magnetostrictions along the < 100 ) and ( 111 ) directions are denoted by 100 > and < 111 ) PHYSICAL AND CHEMICAL PROPERTIES OF GARNETS 347.
Contents
Epitaxial Interfaces | 3 |
Thin Films | 15 |
Semiinfinite Overgrowths | 37 |
Copyright | |
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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 R₁ 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 thermal thickness transition metal values vector X-ray YGaG νμ ΦΩ