TY - JOUR
T1 - Spin injection, transport, and detection in a lateral spin transport devices with Co2FeAl0.5Si0.5/n-GaAs, Co2FeSi/MgO/n-Si, and CoFe/MgO/n-Si junctions
AU - Tezuka, Nobuki
AU - Saito, Yoshiaki
N1 - Publisher Copyright:
© 2016 The Japan Institute of Metals and Materials.
PY - 2016
Y1 - 2016
N2 - We demonstrate spin injection, transport, and detection in a lateral spin transport devices with Co2FeAl0.5Si0.5/n-GaAs, Co2FeSi/MgO/n-Si, and CoFe/MgO/n-Si junctions. Non-local four- and three-terminal Hanle-effect signals indicate large spin injection/detection efficiency in Si for Co2FeSi/MgO/Si on insulator (SOI) devices compared with CoFe/MgO/SOI devices, whereas the preparation methods of MgO layers on SOI are exactly same in both devices. The estimated spin injection/detection efficiency in GaAs is 0.06 at 4.2 K, which is also larger than those of the devices with Fe and CoFe electrodes. Different properties in the bias voltage dependences on the amplitude of spin accumulation signals are also observed between Co2FeSi/MgO/SOI and CoFe/MgO/SOI devices. These results indicate that the species of ferromagnetic material definitely influences the amplitude and the behavior of the spin signals.
AB - We demonstrate spin injection, transport, and detection in a lateral spin transport devices with Co2FeAl0.5Si0.5/n-GaAs, Co2FeSi/MgO/n-Si, and CoFe/MgO/n-Si junctions. Non-local four- and three-terminal Hanle-effect signals indicate large spin injection/detection efficiency in Si for Co2FeSi/MgO/Si on insulator (SOI) devices compared with CoFe/MgO/SOI devices, whereas the preparation methods of MgO layers on SOI are exactly same in both devices. The estimated spin injection/detection efficiency in GaAs is 0.06 at 4.2 K, which is also larger than those of the devices with Fe and CoFe electrodes. Different properties in the bias voltage dependences on the amplitude of spin accumulation signals are also observed between Co2FeSi/MgO/SOI and CoFe/MgO/SOI devices. These results indicate that the species of ferromagnetic material definitely influences the amplitude and the behavior of the spin signals.
KW - Hanle effect
KW - Semiconductor spintronics
KW - Spin accumulation
KW - Spin injection/detection
KW - Spin transport
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U2 - 10.2320/matertrans.ME201502
DO - 10.2320/matertrans.ME201502
M3 - Review article
AN - SCOPUS:84973477569
SN - 1345-9678
VL - 57
SP - 767
EP - 772
JO - Materials Transactions
JF - Materials Transactions
IS - 6
ER -