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      Selective control of multiple ferroelectric switching pathways using a trailing flexoelectric field

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          Mechanical writing of ferroelectric polarization.

          Ferroelectric materials are characterized by a permanent electric dipole that can be reversed through the application of an external voltage, but a strong intrinsic coupling between polarization and deformation also causes all ferroelectrics to be piezoelectric, leading to applications in sensors and high-displacement actuators. A less explored property is flexoelectricity, the coupling between polarization and a strain gradient. We demonstrate that the stress gradient generated by the tip of an atomic force microscope can mechanically switch the polarization in the nanoscale volume of a ferroelectric film. Pure mechanical force can therefore be used as a dynamic tool for polarization control and may enable applications in which memory bits are written mechanically and read electrically.
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            Applications of semi-implicit Fourier-spectral method to phase field equations

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              Effect of substrate constraint on the stability and evolution of ferroelectric domain structures in thin films

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                Author and article information

                Journal
                Nature Nanotechnology
                Nature Nanotech
                Springer Nature
                1748-3387
                1748-3395
                March 12 2018
                :
                :
                Article
                10.1038/s41565-018-0083-5
                29531332
                c478b3b1-c147-4bd8-aa60-102c13c2f745
                © 2018

                http://www.springer.com/tdm

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