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Low-Temperature Nanosecond Laser Process of HZO-IGZO FeFETs toward Monolithic 3D System on Chip Integration

Title
Low-Temperature Nanosecond Laser Process of HZO-IGZO FeFETs toward Monolithic 3D System on Chip Integration
Author(s)
Kim, DongsuJeong, HeejaePyo, GoeunHeo, Su JinBaik, SeunghunKim, SeonhyoungChoi, Hong SooKwon, Hyuk-JunJang, Jae Eun
Issued Date
2024-07
Citation
Advanced Science, v.11, no.28
Type
Article
Author Keywords
emerging memory devicesmonolithic 3D integrationIGZO-HZO FeFETferroelectriclow thermal budgetlaser anneal-ing
Keywords
FERROELECTRICS
ISSN
2198-3844
Abstract
Ferroelectric field-effect transistors (FeFETs) are increasingly important for in-memory computing and monolithic 3D (M3D) integration in system-on-chip (SoC) applications. However, the high-temperature processing required by most ferroelectric memories can lead to thermal damage to the underlying device layers, which poses significant physical limitations for 3D integration processes. To solve this problem, the study proposes using a nanosecond pulsed laser for selective annealing of hafnia-based FeFETs, enabling precise control of heat penetration depth within thin films. Sufficient thermal energy is delivered to the IGZO oxide channel and HZO ferroelectric gate oxide without causing thermal damage to the bottom layer, which has a low transition temperature (<250 degrees C). Using optimized laser conditions, a fast response time (<1 mu s) and excellent stability (cycle > 106, retention > 106 s) are achieved in the ferroelectric HZO film. The resulting FeFET exhibited a wide memory window (>1.7 V) with a high on/off ratio (>10(5)). In addition, moderate ferroelectric properties (2P-r of 14.7 mu C cm(-2)) and pattern recognition rate-based linearity (potentiation: 1.13, depression: 1.6) are obtained. These results demonstrate compatibility in HZO FeFETs by specific laser annealing control and thin-film layer design for various structures (3D integrated, flexible) with neuromorphic applications.
URI
http://hdl.handle.net/20.500.11750/56657
DOI
10.1002/advs.202401250
Publisher
Wiley

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