TY - JOUR
T1 - High spin mixing conductance and spin interface transparency at the interface of a Co2Fe0.4Mn0.6Si Heusler alloy and Pt
AU - Singh, Braj Bhusan
AU - Roy, Koustuv
AU - Gupta, Pushpendra
AU - Seki, Takeshi
AU - Takanashi, Koki
AU - Bedanta, Subhankar
N1 - Funding Information:
The authors acknowledge DAE and DST, Government of India, for financial support of the experimental facilities. B.B.S. acknowledges DST for INSPIRE faculty fellowship. K.R. and P.G. thank CSIR and UGC for their JRF fellowships, respectively. S.B. acknowledges an ICC-IMR fellowship to visit IMR, Tohoku University, for this collaborative work to prepare the thin films.
Publisher Copyright:
© 2021, The Author(s).
PY - 2021/12
Y1 - 2021/12
N2 - Ferromagnetic materials exhibiting low magnetic damping (α) and moderately high-saturation magnetization are required from the viewpoints of generation, transmission, and detection of spin waves. Since spin-to-charge conversion efficiency is another important parameter, high spin mixing conductance (gr↑↓) is the key for efficient spin-to-charge conversion. Full Heusler alloys, e.g., Co2Fe0.4Mn0.6Si (CFMS), which are predicted to be 100% spin-polarized, exhibit low α. However, gr↑↓ at the interface between CFMS and a paramagnet is not fully understood. Here, we report investigations of spin pumping and the inverse spin Hall effect in CFMS/Pt bilayers. Damping analysis indicates the presence of significant spin pumping at the interface of CFMS and Pt, which is also confirmed by the detection of an inverse spin Hall voltage. We show that in CFMS/Pt, gr↑↓ (1.70 × 1020 m−2) and the interface transparency (83%) are higher than the values reported for other ferromagnetic/heavy metal systems. We observed a spin Hall angle of ~0.026 for the CFMS/Pt bilayer system.
AB - Ferromagnetic materials exhibiting low magnetic damping (α) and moderately high-saturation magnetization are required from the viewpoints of generation, transmission, and detection of spin waves. Since spin-to-charge conversion efficiency is another important parameter, high spin mixing conductance (gr↑↓) is the key for efficient spin-to-charge conversion. Full Heusler alloys, e.g., Co2Fe0.4Mn0.6Si (CFMS), which are predicted to be 100% spin-polarized, exhibit low α. However, gr↑↓ at the interface between CFMS and a paramagnet is not fully understood. Here, we report investigations of spin pumping and the inverse spin Hall effect in CFMS/Pt bilayers. Damping analysis indicates the presence of significant spin pumping at the interface of CFMS and Pt, which is also confirmed by the detection of an inverse spin Hall voltage. We show that in CFMS/Pt, gr↑↓ (1.70 × 1020 m−2) and the interface transparency (83%) are higher than the values reported for other ferromagnetic/heavy metal systems. We observed a spin Hall angle of ~0.026 for the CFMS/Pt bilayer system.
UR - http://www.scopus.com/inward/record.url?scp=85099760784&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=85099760784&partnerID=8YFLogxK
U2 - 10.1038/s41427-020-00268-7
DO - 10.1038/s41427-020-00268-7
M3 - Article
AN - SCOPUS:85099760784
SN - 1884-4049
VL - 13
JO - NPG Asia Materials
JF - NPG Asia Materials
IS - 1
M1 - 9
ER -