상세 보기
Fast and energy-efficient resistive switching in ZrOx/TaOx bilayer structures under ultra-low voltage operation for next-generation memory applications
- Lee, Min Kyung;
- Jeong, Jae-Seung;
- Jung, Jaeho;
- Seo, Hyun Kyu;
- Shin, Changhwan;
- 외 2명
WEB OF SCIENCE
1SCOPUS
1초록
In this study, two types of resistive random-access memory (ReRAM) devices-ZrOx single-layer and ZrOx/TaOx bilayer structures-are fabricated and investigated for neuromorphic computing applications. The ZrOx single-layer device shows degraded performance due to limited conductance states. In contrast, the ZrOx/TaOx-based device, which incorporates a TaOx oxygen reservoir, exhibits gradual and self-compliant switching, high endurance exceeding 10(9) cycles, and stable retention at 85 degrees C. Under +/- 1.3 V, 10 ns pulse conditions, it demonstrates linear and symmetric long-term potentiation (LTP) and depression (LTD), enabling precise analog weight modulation. A two-layer multilayer perceptron (MLP) trained on the MNIST dataset achieves 93.31% classification accuracy with the ZrOx/TaOx device, comparable to the software baseline. In off-chip inference, analog weights mapped onto the convolutional layer of an Attention-on-Top Generative Adversarial Network (AOTGAN) yield natural image inpainting and high peak signal-to-noise ratio (PSNR). These findings reveal that TaOx integration is crucial for analog precision, stability, and reproducibility, demonstrating the potential of ZrOx/TaOx-based ReRAM as an energy-efficient building block for next-generation neuromorphic systems.
키워드
- 제목
- Fast and energy-efficient resistive switching in ZrOx/TaOx bilayer structures under ultra-low voltage operation for next-generation memory applications
- 저자
- Lee, Min Kyung; Jeong, Jae-Seung; Jung, Jaeho; Seo, Hyun Kyu; Shin, Changhwan; Kim, Gun Hwan; Yang, Min Kyu
- 발행일
- 2026-03-03
- 유형
- Article
- 권
- 9
- 호
- 2