Uniting The Trinity of Ferroelectric HfO2 Memory Devices in a Single Memory Cell
Stefan Slesazeck, Viktor Havel, Evelyn T. Breyer, Halid Mulaosmanovic, Michael Hoffmann, Benjamin Max, Stefan Duenkel, Thomas Mikolajick
Abstract
Stefan Slesazeck, Viktor Havel, Evelyn T. Breyer, Halid Mulaosmanovic, Michael Hoffmann, Benjamin Max, Stefan Duenkel, Thomas Mikolajick
Abstract
The polarization reversal in ferroelectric HfO2is adopted to store information in three distinct device classes - ferroelectric field effect transistors (FeFET), ferroelectric capacitors (FeCAP) and ferroelectric tunnel junctions (FTJ). Common to all three concepts is the adoption of a ferroelectric layer stack that acts either as gate dielectric in the FeFET or as the capacitor dielectric and tunneling barrier in the FeCAP or FTJ, respectively. A composite structure including an inevitably or purposefully formed dielectric layer is frequently adopted. In this work we report on the co-existence of all three memory concepts within one device structure and propose a 2T1C ferroelectric memory cell that allows the operation and comparative characterization of the trinity of ferroelectric memory devices.
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The polarization reversal in ferroelectric HfO2is adopted to store information in three distinct device classes - ferroelectric field effect transistors (FeFET), ferroelectric capacitors (FeCAP) and ferroelectric tunnel junctions (FTJ). Common to all three concepts is the adoption of a ferroelectric layer stack that acts either as gate dielectric in the FeFET or as the capacitor dielectric and tunneling barrier in the FeCAP or FTJ, respectively. A composite structure including an inevitably or purposefully formed dielectric layer is frequently adopted. In this work we report on the co-existence of all three memory concepts within one device structure and propose a 2T1C ferroelectric memory cell that allows the operation and comparative characterization of the trinity of ferroelectric memory devices.
Key concepts: Ferroelectricity, Ferroelectric capacitor, Capacitor, Dielectric, Materials science, Non-volatile memory, Optoelectronics, Quantum tunnelling