Van de Wiele et al., 2014 - Google Patents
Electric field driven magnetic domain wall motion in ferromagnetic-ferroelectric heterostructuresVan de Wiele et al., 2014
View PDF- Document ID
- 7425310269630675639
- Author
- Van de Wiele B
- Laurson L
- Franke K
- Van Dijken S
- Publication year
- Publication venue
- Applied Physics Letters
External Links
Snippet
We investigate magnetic domain wall (MDW) dynamics induced by applied electric fields in ferromagnetic-ferroelectric thin-film heterostructures. In contrast to conventional driving mechanisms where MDW motion is induced directly by magnetic fields or electric currents …
- 230000005684 electric field 0 title abstract description 13
Classifications
-
- G—PHYSICS
- G11—INFORMATION STORAGE
- G11C—STATIC STORES
- G11C11/00—Digital stores characterised by the use of particular electric or magnetic storage elements; Storage elements therefor
- G11C11/02—Digital stores characterised by the use of particular electric or magnetic storage elements; Storage elements therefor using magnetic elements
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Van de Wiele et al. | Electric field driven magnetic domain wall motion in ferromagnetic-ferroelectric heterostructures | |
Finocchio et al. | Switching of a single ferromagnetic layer driven by spin Hall effect | |
Suzuki et al. | Current-induced effective field in perpendicularly magnetized Ta/CoFeB/MgO wire | |
Jung et al. | Current-induced domain wall motion in a nanowire with perpendicular magnetic anisotropy | |
Nakatani et al. | Electric field control of Skyrmions in magnetic nanodisks | |
Lee et al. | Remarkable enhancement of domain-wall velocity in magnetic nanostripes | |
Chen et al. | Skyrmion dynamics in width-varying nanotracks and implications for skyrmionic applications | |
Kunihashi et al. | Proposal of spin complementary field effect transistor | |
Fukami et al. | Relation between critical current of domain wall motion and wire dimension in perpendicularly magnetized Co/Ni nanowires | |
Wang et al. | Magnetic domain wall engineering in a nanoscale permalloy junction | |
Siracusano et al. | Intrinsic synchronization of an array of spin-torque oscillators driven by the spin-Hall effect | |
Jenkins et al. | Enhanced finite size and interface mixing effects in iridium manganese ultra thin films | |
Zhang et al. | Current induced perpendicular-magnetic-anisotropy racetrack memory with magnetic field assistance | |
Joos et al. | Tutorial: Simulating modern magnetic material systems in mumax3 | |
Park et al. | Fast deterministic switching in orthogonal spin torque devices via the control of the relative spin polarizations | |
Lu et al. | Quantum simulation of topological insulator based spin transfer torque device | |
Li et al. | Tailoring spin-orbit torque in diluted magnetic semiconductors | |
Salahuddin et al. | Self-consistent simulation of quantum transport and magnetization dynamics in spin-torque based devices | |
Chen et al. | Synchronization of spin torque nano-oscillators through dipolar interactions | |
Guo et al. | Oscillation characteristics of zero-field spin transfer oscillators with field-like torque | |
Finocchio et al. | Trends in spin-transfer-driven magnetization dynamics of CoFe∕ AlO∕ Py and CoFe∕ MgO∕ Py magnetic tunnel junctions | |
Kumari et al. | Study of magnetization state transition in closely spaced nanomagnet two-dimensional array for computation | |
Consolo et al. | Curved domain walls dynamics driven by magnetic field and electric current in hard ferromagnets | |
Chen et al. | Modeling of ferroelectric control of magnetic domain pattern and domain wall properties | |
Kuepferling et al. | Vortex dynamics in Co-Fe-B magnetic tunnel junctions in presence of defects |