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Comprehensive analysis of read-after-write latency in HfZrOX-based ferroelectric field-effect-transistors with SiO2 interfacial layer

Authors
Kim, HaesungYang, HyojinLee, SeongwonYun, SanghyukPark, JunseongPark, SejunLee, Ha-NeulKim, HyeonsikChoi, Sung-JinKim, Dae HwanKim, Dong MyongKwon, DaewoongBae, Jong-Ho
Issue Date
Jan-2024
Publisher
American Institute of Physics
Citation
Applied Physics Letters, v.124, no.3, pp 1 - 7
Pages
7
Indexed
SCIE
SCOPUS
Journal Title
Applied Physics Letters
Volume
124
Number
3
Start Page
1
End Page
7
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/196781
DOI
10.1063/5.0172204
ISSN
0003-6951
1077-3118
Abstract
In this paper, a quantitative analysis is performed focusing on the read-after-write latency (RWL) phenomenon in HfOX-based ferroelectric field-effect transistors with a metal-ferroelectric-insulator-semiconductor structure. RWL is scrutinized by modifying two variables: the pulse width (tp) for the “write 1” operation and the operating temperature (T); the response of the charge component is found to follow an emission mechanism. Additionally, we identified a notable change in charge behavior at a specific temperature (Tb), where capture and emission are in balance. Experimental investigations have demonstrated that the activation energy (EA) for these charge components is situated between 0.2 and 0.5 eV, and the Tb is ∼50 °C. By elucidating the relationship between T, tp, remnant polarization (Pr), and Tb, we offer insights into the importance of optimizing tp and Pr on the transient response of the balanced charge and the related RWL phenomenon.
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