On the relationship between field cycling and imprint in ferroelectric Hf0.5Zr0.5O2

Manifold research has been done to understand the detailed mechanisms behind the performance instabilities of ferroelectric capacitors based on hafnia. The wake-up together with the imprint might be the most controversially discussed phenomena so far. Among crystallographic phase change contribution...

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Veröffentlicht in:Journal of applied physics 2018-05, Vol.123 (20)
Hauptverfasser: Fengler, F. P. G., Hoffmann, M., Slesazeck, S., Mikolajick, T., Schroeder, U.
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Sprache:eng
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Zusammenfassung:Manifold research has been done to understand the detailed mechanisms behind the performance instabilities of ferroelectric capacitors based on hafnia. The wake-up together with the imprint might be the most controversially discussed phenomena so far. Among crystallographic phase change contributions and oxygen vacancy diffusion, electron trapping as the origin has been discussed recently. In this publication, we provide evidence that the imprint is indeed caused by electron trapping into deep states at oxygen vacancies. This impedes the ferroelectric switching and causes a shift of the hysteresis. Moreover, we show that the wake-up mechanism can be caused by a local imprint of the domains in the pristine state by the very same root cause. The various domain orientations together with an electron trapping can cause a constriction of the hysteresis and an internal bias field in the pristine state. Additionally, we show that this local imprint can even cause almost anti-ferroelectric like behavior in ferroelectric films.
ISSN:0021-8979
1089-7550
DOI:10.1063/1.5026424