arXiv:2309.06984 [cond-mat.mes-hall]AbstractReferencesReviewsResources
Ab initio transport calculations: from normal to superconducting current
Published 2023-09-13Version 1
Applying the Bogoliubov-de Gennes equations with density-functional theory, it is possible to formulate first-principles description of current-phase relationships in superconducting/normal (magnetic)/superconducting trilayers. Such structures are the basis for the superconducting analog of Magnetoresistive random access memory devices (JMRAM). In a recent paper [1] we presented results from the first attempt to formulate such a theory, applied to the Nb/Ni/Nb trilayers. In the present work we provide computational details, explaining how to construct key ingredient (scattering matrices $S_N$) in a framework of linear muffin-tin orbitals (LMTO).
Comments: Proceeding for the Spintronics XVI - SPIE 2023 conference
Keywords: ab initio transport calculations, superconducting current, magnetoresistive random access memory devices, formulate first-principles description, linear muffin-tin orbitals
Tags: conference paper
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