Nanosecond switching in GeTe phase change memory cells
Gunnar Bruns, Philipp Merkelbach, Carl Schlockermann, Martin Salinga, Matthias Wuttig, Thomas D. Happ, Jan Boris Philipp, M. Kund
Abstract
Gunnar Bruns, Philipp Merkelbach, Carl Schlockermann, Martin Salinga, Matthias Wuttig, Thomas D. Happ, Jan Boris Philipp, M. Kund
Abstract
The electrical switching behavior of GeTe-based phase change memory devices is characterized by time resolved experiments. SET pulses with a duration of less than 16 ns are shown to crystallize the material. Depending on the resistance of the RESET state, the minimum SET pulse duration can even be reduced down to 1 ns. This finding is attributed to the increasing impact of crystal growth upon decreasing switchable volume. Using GeTe or materials with similar crystal growth velocities, hence promises nonvolatile phase change memories with dynamic random access memorylike switching speeds.
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The electrical switching behavior of GeTe-based phase change memory devices is characterized by time resolved experiments. SET pulses with a duration of less than 16 ns are shown to crystallize the material. Depending on the resistance of the RESET state, the minimum SET pulse duration can even be reduced down to 1 ns. This finding is attributed to the increasing impact of crystal growth upon decreasing switchable volume. Using GeTe or materials with similar crystal growth velocities, hence promises nonvolatile phase change memories with dynamic random access memorylike switching speeds.
Key concepts: Reset (finance), Phase-change memory, Switching time, Materials science, Non-volatile memory, Nanosecond, Phase (matter), Pulse duration