TY - GEN
T1 - Electric field control of the magnetization dynamics of ferromagnetic/ferroelectric multiferroic heterostructure
AU - Xie, L.
AU - Nan, T.
AU - Hu, Z.
AU - Wang, X.
AU - Gao, Y.
AU - Chen, X.
AU - Liu, M.
AU - Sun, N.
N1 - Publisher Copyright:
© 2015 IEEE.
PY - 2015/7/14
Y1 - 2015/7/14
N2 - Multiferroic heterostrcture composed of ferromagnetic and ferroelectric phase has recently attracted ever-increasing amount of interest due to its strong magnetoelectric coupling at room temperature [1-3]. In particular, the strain-mediated magnetoelectric (ME) coupling arising from the combined piezoelectric and magnetoelastic effect has shown a large modification of the magnetic anisotropy of the ferromagnetic layer by the application of electric field. This enables various applications including low power spintronics, voltage tunable microwave devices, magnetic sensors and etc [4, 5].
AB - Multiferroic heterostrcture composed of ferromagnetic and ferroelectric phase has recently attracted ever-increasing amount of interest due to its strong magnetoelectric coupling at room temperature [1-3]. In particular, the strain-mediated magnetoelectric (ME) coupling arising from the combined piezoelectric and magnetoelastic effect has shown a large modification of the magnetic anisotropy of the ferromagnetic layer by the application of electric field. This enables various applications including low power spintronics, voltage tunable microwave devices, magnetic sensors and etc [4, 5].
UR - https://www.scopus.com/pages/publications/84942474624
U2 - 10.1109/INTMAG.2015.7156526
DO - 10.1109/INTMAG.2015.7156526
M3 - 会议稿件
AN - SCOPUS:84942474624
T3 - 2015 IEEE International Magnetics Conference, INTERMAG 2015
BT - 2015 IEEE International Magnetics Conference, INTERMAG 2015
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2015 IEEE International Magnetics Conference, INTERMAG 2015
Y2 - 11 May 2015 through 15 May 2015
ER -