상세 보기
Artificial synapse characteristics of a ZnO-based memristor with a short-term memory effect
- Yun, Seokyeon;
- Mahata, Chandreswar;
- Kim, Min-Hwi;
- Kim, Sungjun
WEB OF SCIENCE
41SCOPUS
41초록
We fabricated and characterized a Ni/ZnO/TiN memristor device designed to emulate an artificial synapse for use in a neuromorphic system. Chemical and material characterization was conducted using ultraviolet photoelectron spectroscopy, energy-dispersive X-ray spectroscopy, and transmission electron microscopy. The device exhibited gradual resistive switching as a multi-level cell with an increase in the DC sweep voltage. Current decay was observed after the set process, indicating that it could feasibly be employed in short-term memory applications. We demonstrated both short-term memory and long-term memory behavior in the proposed device. Higher conductance was maintained via repetitive pulses with a high voltage and a short time interval, while conductance was lower when repetitive pulses with a low voltage and a short time interval were employed. Pulse interval-dependent paired-pulse facilitation characteristics were used to mimic an artificial synapse, with potentiation and depression observed over multiple cycles. We also evaluated the pattern-recognition accuracy of the proposed conductance modulation with degradation based on the short-term memory effect using a 784 x 10 cross-point array netlist and a SPICE resistor model.
키워드
- 제목
- Artificial synapse characteristics of a ZnO-based memristor with a short-term memory effect
- 저자
- Yun, Seokyeon; Mahata, Chandreswar; Kim, Min-Hwi; Kim, Sungjun
- 발행일
- 2022-03
- 유형
- Article
- 권
- 579
- 페이지
- 1 ~ 6