Universal behavior of magnon-mediated spin transport in disordered NM/NM/FI heterostructure
Gaoyang Li, Fuming Xu, Jian Wang

TL;DR
This study reveals universal scaling behaviors and non-Gaussian distributions of magnon-mediated spin conductance in disordered NM/NM/FI heterostructures, highlighting a new universality class in the localized regime.
Contribution
It uncovers universal scaling laws and distribution functions for spin conductance and thermopower in disordered NM/NM/FI systems, demonstrating a distinct universality class.
Findings
Spin conductance fluctuation scales linearly with average conductance in the metallic regime.
The distribution of lnG in the localized regime is non-Gaussian with specific cumulant relations.
Universal behavior of lnG distribution depends only on <lnG> across system parameters.
Abstract
We numerically investigate the magnon-mediated spin transport and scaling behaviors of a nonmagnetic metal/nonmagnetic metal/ferromagnetic insulator (NM/NM/FI) heterostructure in the presence of Anderson disorders. For the two-dimensional (2D) NM/NM/FI system, an enhancement of spin conductance in the weak disorder regime is found due to the increasing of the interfacial density of states (DOS) at NM/FI interface. As a result, a new scaling regime is uncovered in the metallic regime where the spin conductance fluctuation rms(G) scales linearly with the average spin conductance <G>, independent of system parameters such as Fermi energies and temperatures. The competition between the disorder-enhanced interfacial DOS and disorder-suppressed spin transport results in a non-monotonic dependence of average spin conductance on disorder strength. In the localized regime, the variance of lnG…
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Taxonomy
TopicsQuantum and electron transport phenomena · Magnetic properties of thin films · Surface and Thin Film Phenomena
