Invariant polarization switching kinetics in an (Al0.8Sc0.2)N film with frequency and temperature

Author:

Yasuoka Shinnosuke1ORCID,Mizutani Ryoichi1,Ota Reika1ORCID,Shiraishi Takahisa1ORCID,Shimizu Takao23ORCID,Okamoto Kazuki1ORCID,Uehara Masato4ORCID,Yamada Hiroshi4ORCID,Akiyama Morito4ORCID,Funakubo Hiroshi15ORCID

Affiliation:

1. Department of Materials Science and Engineering, Tokyo Institute of Technology 1 , Yokohama 226-8502, Japan

2. Research Center for Functional Materials, National Institute for Materials Science 2 , Tsukuba 305-0044, Japan

3. PRESTO, Japan Science and Technology Agency 3 , 4-1-8 Honcho, Kawaguchi-shi, Saitama 332-0012, Japan

4. Sensing System Research Center, National Institute of Advanced Industrial Science and Technology (AIST) 4 , Tosu 841-0052, Japan

5. Materials Research Center for Element Strategy, Tokyo Institute of Technology 5 , Yokohama 226-8502, Japan

Abstract

In this study, the switching kinetics in a (001)-out-of-plane-oriented (Al0.8Sc0.2)N thin film were systematically investigated as a function of temperature and frequency. The switching behavior followed the Kolmogorov–Avrami–Ishibashi model within the temperature and write-pulse width ranges of 300–473 K and 10 Hz–600 kHz, respectively. The switching speed increased linearly with the electric field, even at high electric fields. The frequency dependence of the coercive field (Ec) evaluated at room temperature revealed that the scaling regime of the domain-wall propagation did not transition to the flow regime, and the switching velocity of the domain increased linearly with the electric field even at high frequencies up to 600 kHz. The invariant domain-wall motion regime implies the potential of using (Al,Sc)N films for high-frequency applications. In addition, a formula for estimating the coercive field of an (Al,Sc)N film was derived by fitting the parameters obtained from the study of switching behavior. The formula indicated that the switching electric field tends to become insensitive to frequency as temperature increases. Moreover, the frequency dependency of the field was minimal even at room temperature. This is a useful index for estimating the drive voltage at the operating frequency and temperature.

Funder

Ministry of Education, Culture, Sports, Science and Technology

Japan Society for the Promotion of Science

JST PRESTO

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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