2008 · 79 citations · 6 references
Non-volatile MemoryElectrical EngineeringNew Ion-transport-recombination ModelEngineeringNanoelectronicsApplied PhysicsComputer EngineeringOxide MatrixMemory DeviceSemiconductor MemoryResistive Random-access MemoryMicroelectronicsUnified Physical ModelPhase Change MemoryReset Speed
This paper presents a unified physical model to elucidate the resistive switching behavior of metal-oxide-based resistive random access memory (RRAM) devices using the ion-transport-recombination model. In this model, the rupture of conductive filaments is caused by recombination of oxygen ions and electron-low-occupied oxygen vacancies. The transport equations of interstitial oxygen ions in the oxide matrix are introduced to quantitatively investigate the reset speed and other properties such as uniformity, endurance, and reset current. The proposed mechanism was verified by experiments.
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Non-volatile resistive switching for advanced memory applications
An Chen, S. Haddad, Yi-Ching Wu et al. · 2006 · 183 citations
Non-volatile Memory, Engineering, Emerging Memory Technology +16
A unified physical model of switching behavior in oxide-based RRAM
Nuo Xu, Bin Gao, Lifeng Liu et al. · 2008 · 93 citations
Non-volatile Memory, Engineering, Emerging Memory Technology +18