Investigating Quasi-Nonvolatile Memory Behavior in Junctionless Field-Effect Transistors with SOI-Like Structure

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초록

This study presents a junctionless FinFET based quasi-nonvolatile memory (JL-FinFET QNVM) device with a silicon-on-insulator-like (SOI-like) structure and long retention time. In the JL-FinFET QNVM, the weak impact ionization mechanism is used to appropriately a induce weak impact ionization during the hold operation to generate holes continuously; this prevents the recombination of holes in the hold time. The sensing margin at both 300 and 358 K was 3.33 mu A/mu m when using the weak impact ionization mechanism in the proposed transistor. In particular, the proposed device showed an exceptionally lengthy retention time, with the quasi-nonvolatile characteristics exceeding 102 s regardless of the temperature. Additionally, the reliability of the proposed device was simulated by considering the grain boundary variation in polycrystalline silicon that was used for the SOI-like structure. The Shockley-Read-Hall recombination, hole density, and electron potential barrier were also analyzed to explore the memory state during the weak impact ionization mechanism.

키워드

Junctionless field effect transistor; Weak impact ionization mechanism; Silicon on insulator like structure; Quasi nonvolatile memory; CAPACITORLESS DRAM; OVERCOME; BIAS
제목
Investigating Quasi-Nonvolatile Memory Behavior in Junctionless Field-Effect Transistors with SOI-Like Structure
저자
Lee, Sang Ho; Park, Jin; Yoon, Young Jun; Kang, In Man
DOI
10.1007/s12633-025-03487-1
발행일
2025-11-21
유형
Article
저널명
Silicon
권
17
호
18
페이지
4547 ~ 4555