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Nonvolatile ferroelectric domain wall memory.


ABSTRACT: Ferroelectric domain walls are atomically sharp topological defects that separate regions of uniform polarization. The discovery of electrical conductivity in specific types of walls gave rise to "domain wall nanoelectronics," a technology in which the wall (rather than the domain) stores information. This paradigm shift critically hinges on precise nanoengineering of reconfigurable domain walls. Using specially designed nanofabricated electrodes and scanning probe techniques, we demonstrate a prototype nonvolatile ferroelectric domain wall memory, scalable to below 100 nm, whose binary state is defined by the existence or absence of conductive walls. The device can be read out nondestructively at moderate voltages (<3 V), exhibits relatively high OFF-ON ratios (~103) with excellent endurance and retention characteristics, and has multilevel data storage capacity. Our work thus constitutes an important step toward integrated nanoscale ferroelectric domain wall memory devices.

SUBMITTER: Sharma P 

PROVIDER: S-EPMC5482552 | biostudies-literature | 2017 Jun

REPOSITORIES: biostudies-literature

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Nonvolatile ferroelectric domain wall memory.

Sharma Pankaj P   Zhang Qi Q   Sando Daniel D   Lei Chi Hou CH   Liu Yunya Y   Li Jiangyu J   Nagarajan Valanoor V   Seidel Jan J  

Science advances 20170623 6


Ferroelectric domain walls are atomically sharp topological defects that separate regions of uniform polarization. The discovery of electrical conductivity in specific types of walls gave rise to "domain wall nanoelectronics," a technology in which the wall (rather than the domain) stores information. This paradigm shift critically hinges on precise nanoengineering of reconfigurable domain walls. Using specially designed nanofabricated electrodes and scanning probe techniques, we demonstrate a p  ...[more]

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