Treatise on Materials Science and Technology, Volume 2 |
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Results 1-3 of 93
Page 81
If the stresses due to the misfits in the x and y directions of a given interface and
the diffusion induced stresses are analyzed as in Eqs . ( A . 6 ) , e . g . , Px ( x , y ,
z ) = 1Px ( x , z ) + 2Px ( y , z ) + ēx ( z ) ( 7 . 25 ) where 7x ( 2 ) represents the ...
If the stresses due to the misfits in the x and y directions of a given interface and
the diffusion induced stresses are analyzed as in Eqs . ( A . 6 ) , e . g . , Px ( x , y ,
z ) = 1Px ( x , z ) + 2Px ( y , z ) + ēx ( z ) ( 7 . 25 ) where 7x ( 2 ) represents the ...
Page 129
first , acceptable forms for V 9 must be given . In the long wavelength limit , as
used for small angle scattering , it is reasonable to use mag = - 4 , B = - HOR YOB
( II . 90 ) where Hox = ( eh ) / ( 2mc ) , y = - 1 . 91 , and o is the Pauli operator : 0 -
1 ...
first , acceptable forms for V 9 must be given . In the long wavelength limit , as
used for small angle scattering , it is reasonable to use mag = - 4 , B = - HOR YOB
( II . 90 ) where Hox = ( eh ) / ( 2mc ) , y = - 1 . 91 , and o is the Pauli operator : 0 -
1 ...
Page 368
The former case is given by CL ( ReIG ) = ( WR / WEu ) % C _ ( EUIG ) ( 51 )
where Wre and W Eu are the masses of the rare ... A list of the lattice specific heat
temperature coefficients , Aų , for several RelG and YIG is given in Table XXVII .
The former case is given by CL ( ReIG ) = ( WR / WEu ) % C _ ( EUIG ) ( 51 )
where Wre and W Eu are the masses of the rare ... A list of the lattice specific heat
temperature coefficients , Aų , for several RelG and YIG is given in Table XXVII .
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Contents
Epitaxial Interfaces | 3 |
Thin Films | 15 |
Semiinfinite Overgrowths | 52 |
Copyright | |
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angle anisotropy approximation assumed atoms average axis c-site calculated cations coherent compounds concentration condition considerations constants contribution corresponding crystal curve decreases defect density dependence determined diffusion direction discussed dislocations displacement effect elastic elastic scattering electron energy equation et al experimental experiments factor field flux flux lines follows force function garnets given gives important impurity increases interaction interface ions lattice limit magnetic materials measured Merwe metal method misfit mode neutron normal observed obtained optical parameter phase phonon Phys plane position potential present processes properties range reference region resolution respectively sample scattering cross section shown shows single solid solution space strain stress structure substrate superconducting surface Table temperature tetrahedral theory thermal thickness transition unit values vector wave X-ray