Treatise on Materials Science and TechnologyHerbert Herman |
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Page 247
Herbert Herman. higher transition temperature . The high temperature phase of Sn , which is metastable below 13 ° C , has a superconducting transition temperature of 3.7 ° K compared to 0.1 ° K for the stable gray Sn ( Shirber and ...
Herbert Herman. higher transition temperature . The high temperature phase of Sn , which is metastable below 13 ° C , has a superconducting transition temperature of 3.7 ° K compared to 0.1 ° K for the stable gray Sn ( Shirber and ...
Page 249
... transition metals . Results of Jensen and of McMillan were obtained by fitting the experimental values of T. , Op ... transition metal ions . For the transition metals , their approach leads to higher Te's with disordering for N ( 0 ) ...
... transition metals . Results of Jensen and of McMillan were obtained by fitting the experimental values of T. , Op ... transition metal ions . For the transition metals , their approach leads to higher Te's with disordering for N ( 0 ) ...
Page 254
... transition temperature and the transformation temperature from the C - 15 ( cubic Laves phase ) structure to the orthorhombic structure on cooling below 118 ° K in both ( Hf , Ta ) V2 and ( Hf , Zr ) V2 alloys . 2. ELECTRON PROPERTIES ...
... transition temperature and the transformation temperature from the C - 15 ( cubic Laves phase ) structure to the orthorhombic structure on cooling below 118 ° K in both ( Hf , Ta ) V2 and ( Hf , Zr ) V2 alloys . 2. ELECTRON PROPERTIES ...
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 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