Bias dependence of tunneling magnetoresistance in magnetic tunnel junctions with asymmetric barriers
arXiv:1309.4357 · doi:10.1088/0953-8984/25/49/496005
Abstract
The transport properties of magnetic tunnel junctions (MTJs) are very sensitive to interface modifications. In this work we investigate both experimentally and theoretically the effect of asymmetric barrier modifications on the bias dependence of tunneling magnetoresistance (TMR) in single crystal Fe/MgO-based MTJs with (i) one crystalline and one rough interface and (ii) with a monolayer of O deposited at the crystalline interface. In both cases we observe an asymmetric bias dependence of TMR and a reversal of its sign at large bias. We propose a general model to explain the bias dependence in these and similar systems reported earlier. The model predicts the existence of two distinct TMR regimes: (i) tunneling regime when the interface is modified with layers of a different insulator and (ii) resonant regime when thin metallic layers are inserted at the interface. We demonstrate that in the tunneling regime negative TMR is due to the high voltage which overcomes the exchange splitting in the electrodes, while the asymmetric bias dependence of TMR is due to the interface transmission probabilities. In the resonant regime inversion of TMR could happen at zero voltage depending on the alignment of the resonance levels with the Fermi surfaces of the electrodes. Moreover, the model predicts a regime in which TMR has different sign at positive and negative bias suggesting possibilities of combining memory with logic functions.
References in corpus (5)
- Anomalous Bias Dependence of Spin Torque in Magnetic Tunnel Junctions
- First principles modeling of tunnel magnetoresistance of Fe/MgO/Fe trilayers
- Negative tunneling magnetoresistance by canted magnetization in MgO/NiO tunnel barriers
- Current-driven magnetic rearrangements in spin-polarized point contacts
- Voltage Dependence of Spin Transfer Torque in Magnetic Tunnel Junctions
Cited by in corpus (7)
- Impurity induced enhancement of perpendicular magnetic anisotropy in Fe/MgO tunnel junctions
- Magnetoresistance in Co-hBN-NiFe tunnel junctions enhanced by resonant tunneling through single defects in ultrathin hBN barriers
- Bidirectional switching assisted by interlayer exchange coupling in asymmetric magnetic tunnel junctions
- Bias voltage controlled inversions of tunneling magnetoresistance in van der Waals heterostructures Fe3GaTe2/hBN/Fe3GaTe2
- Surface Acoustic Wave induced modulation of tunneling magnetoresistance in magnetic tunnel junctions
- Zero-field dynamics stabilized by in-plane shape anisotropy in MgO-based spin-torque oscillators
- Spin-transfer dynamics in MgO-based magnetic tunnel junctions with an out-of-plane magnetized free layer and an in-plane polarizer