4.2 Article

Effect of domain wall conductivity on domain formation energy

期刊

FERROELECTRICS
卷 604, 期 1, 页码 79-89

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/00150193.2023.2168983

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Domain wall conductivity; domain reversal; domain formation energy; charge compensation; lithium niobate

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Domain wall conductivity, as a general ferroelectric phenomenon, can compensate the bound polarization charge on domain walls by free charges from electrodes, which effectively reduces the domain formation energy and resolves the issue of excessive depolarization energy.
Domain wall (DW) conductivity is nowadays considered as a general ferroelectric phenomenon. As applied to ferroelectric domain reversal, it is capable of providing a strong and instantaneous compensation of the bound polarization charge on DWs by free charges coming from electrodes. We claim that account for this compensation can strongly lower the domain formation energy as compared to that known from the Landauer theory. This facilitates the domain reversal process and resolves the problem of an excessively large depolarization energy. We provide a derivation and detailed analysis of the domain formation energy in the presence of the DW conduction; this is relevant to both the capacitor and atomic force microscopy experimental configurations.

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