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Self-consistent determination of spin Hall angle and spin diffusion length in Pt and Pd: The role of the interface spin loss
Author(s) -
X. D. Tao,
Qi Liu,
B. F. Miao,
Rui Yu,
Zheng Feng,
Liang Sun,
Biao You,
Jun Du,
Kai Chen,
Shufeng Zhang,
Luo Zhang,
Zhe Yuan,
Di Wu,
Haifeng Ding
Publication year - 2018
Publication title -
science advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.928
H-Index - 146
ISSN - 2375-2548
DOI - 10.1126/sciadv.aat1670
Subject(s) - spin diffusion , spin hall effect , spin (aerodynamics) , condensed matter physics , diffusion , materials science , charge (physics) , spin pumping , inverse , interface (matter) , spin polarization , physics , electron , thermodynamics , quantum mechanics , contact angle , mathematics , ferromagnetism , geometry , sessile drop technique , composite material
Spin Hall angle (θ) and spin diffusion length (λ) are the key parameters in describing the spin-charge conversion, which is an integral part of spintronics. Despite their importance and much effort devoted to quantifying them, significant inconsistencies in the reported values for the same given material exist. We report a self-consistent method to quantify both θ and λ of nonmagnetic materials by spin pumping with various ferromagnetic (FM) pumping sources. We characterize the spin-charge conversion for Pt and Pd with various FM combinations using (i) effective spin-mixing conductance, (ii) microwave photoresistance, and (iii) inverse spin Hall effect measurements and find that the pumped spin current suffers an interfacial spin loss (ISL), whose magnitude varies for different interfaces. By properly treating the ISL effect, we obtained consistent values of θ and λ for both Pt and Pd regardless of the ferromagnet used.

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