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Spin-resolved electron transport in nanoscale heterojunctions. Theory and applications-ballistic, ballistic and quantum regimes of the spin-resolved conductance that is important for further development

Mathematical description data: Spin-resolved electron transport in nanoscale heterojunctions: Theory and applications minimum profile of the system, is well-defined. The presented spin-resolved current approach covers a

Simulation of the nanoscale interconnects within a spin-resolved electron transport model© 2020 IEEE. The work represents the theoretical modeling of the electrical conductance

Giant magnetoresistance in quantum magnetic contactsWe present calculations of quantized conductance and magnetoresistance in nanosize point contacts

Giant magnetoresistance in quantum magnetic contactsWe present calculations of quantized conductance and magnetoresistance in nanosize point contacts

Spin flip conductance of quantum nanocontacts. The spin-flip conductivity imposes natural limitation on magnetoresistance of a point contact, which

Spin-flip and domain wall magnetoresistance in quantum magnetic nanocontacts zero-order approximation. Spin-flip and spin-conserving quantized conductances of the nanocontact

Spin-flip and domain wall magnetoresistance in quantum magnetic nanocontacts zero-order approximation. Spin-flip and spin-conserving quantized conductances of the nanocontact

Spin flip conductance of quantum nanocontacts. The spin-flip conductivity imposes natural limitation on magnetoresistance of a point contact, which

Boundary conditions for quasiclassical Green functions at superconductor-ferromagnet interfaceThe quasiclassical equations of superconductivity for a metal with spin-split conduction band

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