Current-Induced Effective Magnetic Fields in Co/Cu/Co Nanopillars
arXiv:cond-mat/0405617 · doi:10.1103/PhysRevB.70.184438
Abstract
We present a method to measure the effective field contribution to spin-transfer-induced interactions between the magnetic layers in a trilayer nanostructure, which enables spin-current effects to be distinguished from the usual charge-current-induced magnetic fields. This technique is demonstrated on submicron Co/Cu/Co nanopillars. The hysteresis loop of one of the magnetic layers in the trilayer is measured as a function of current while the direction of magnetization of the other layer is kept fixed, first in one direction and then in the opposite direction. These measurements show a current-dependent shift of the hysteresis loop which, based on the symmetry of the magnetic response, we associate with spin-transfer. The observed loop-shift with applied current at room temperature is reduced in measurements at 4.2 K. We interprete these results both in terms of a spin-current dependent effective activation barrier for magnetization reversal and a spin-current dependent effective magnetic field. From data at 4.2 K we estimate the magnitude of the spin-transfer induced effective field to be Oe cm/A, about a factor of 5 less than the spin-transfer torque.
6 pages, 4 figures
Cited by in corpus (22)
- Spin Transfer Torques
- Symmetry and magnitude of spin-orbit torques in ferromagnetic heterostructures
- Measurement of the Spin-Transfer-Torque Vector in Magnetic Tunnel Junctions
- Bias-driven large power microwave emission from MgO-based tunnel magnetoresistance devices
- Macrospin Models of Spin Transfer Dynamics
- High domain wall velocities due to spin currents perpendicular to the plane
- Magnetization precession due to a spin polarized current in a thin nanoelement: numerical simulation study
- Spin-orbit torque opposing the Oersted torque in ultrathin Co/Pt bilayers
- Micromagnetic simulations of the magnetization precession induced by a spin polarized current in a point contact geometry
- Effect of Meissner screening and trapped magnetic flux on magnetization dynamics in thick Nb/Ni80Fe20/Nb trilayers
- Bias dependence of perpendicular spin torque and of free and fixed layer eigenmodes in MgO-based nanopillars
- Theory of the spin-torque-driven ferromagnetic resonance in a ferromagnet/normal-metal/ferromagnet structure
- Bias dependence of magnetic exchange interactions: application to interlayer exchange coupling in spin valves
- Field- and damping-like spin-transfer torque in magnetic multilayers
- Bipolar High Field Excitations in Co/Cu/Co Nanopillars
- Thickness dependence study of current-driven ferromagnetic resonance in Y3Fe5O12/heavy metal bilayers
- Micromagnetic view on ultrafast magnon generation by femtosecond spin current pulses
- Current-induced switching of magnetic tunnel junctions: Effects of field-like spin-transfer torque, pinned-layer magnetization orientation and temperature
- Optimal time-dependent polarized current pattern for fast domain wall propagation in nanowires: Exact solutions for biaxial and uniaxial anisotropies
- Nanofabrication of spin-transfer torque devices by a PMMA mask one step process: GMR versus single layer devices
- Impact of inherent energy barrier on spin-orbit torques in magnetic-metal/semimetal heterojunctions
- Macrospin model of incubation delay due to the field-like spin transfer torque