Publication | Open Access
Direct imaging of the structural change generated by dielectric breakdown in MgO based magnetic tunnel junctions
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Citations
14
References
2008
Year
Broken Tunnel JunctionsEngineeringMagnetic ResonanceMagnetic MaterialsMagnetoresistanceMagnetismTunneling MicroscopyMgo BarrierMagnetohydrodynamicsStructural ChangeElectrical EngineeringPhysicsTime-dependent Dielectric BreakdownMagnetic MeasurementMicroelectronicsDielectric BreakdownPinhole FormationSpintronicsNatural SciencesMagnetic Tunnel JunctionsApplied PhysicsCondensed Matter PhysicsMagnetic DeviceElectrical Insulation
MgO based magnetic tunnel junctions are prepared to investigate the dielectric breakdown of the barrier. The breakdown is visualized by transmission electron microscopy measurements. The broken tunnel junctions are prepared for the microscopy measurements by focused ion beam out of the junctions characterized by transport investigations. A direct comparison of transport behavior and structure of the intact and broken junctions is obtained. The MgO barrier shows many microscopic pinholes after breakdown. This can be explained within a model assuming a relationship between the current density at the breakdown and the rate of pinhole formation.
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