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Impacts of Zr content of HfZrOx-Based FeFET memory on resilience towards proton radiation
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Impacts of Zr content of HfZrOx-Based FeFET memory on resilience towards proton radiation

Hao-Kai Peng, Sheng-Yen Zheng, Wei-Ning Kao, Ting-Chieh Lai, Kai-Sheun LeeYung-Hsien Wu
Applied Surface Science, 卷.645, 158788
02/2024

摘要

De-trapping Ferroelectric HfZrOx Oxygen vacancy Proton radiation Recovery Space mission Condensed Matter Physics Surfaces and Interfaces Surfaces Coatings and Films
High energy/fluence (10 MeV/2.5 × 10 14 ions·cm −2 ) proton radiation effects on the performance of HfZrO x (HZO)-based ferroelectric field effect transistors (FeFETs) memory with various Zr content were studied for the first time. As the Zr content reaches 67 % (tetragonal-phase rich), degraded de-trapping, switching speed, memory window (MW) and polarization-voltage slope occur due to more oxygen vacancies (Vo) generation upon proton radiation resulting from intrinsically higher amount Vo. For FeFETs (Zr: 50 %), irradiated devices exhibit a MW of ∼ 2.4 V while other characteristics show almost independent of radiation. The irradiated FeFETs also reveal good endurance up to 10 9 cycles by recovery and 10-year retention. The higher resilience towards radiation for FeFETs (Zr: 50 %) is obtained since Vo redistribution is dominant with negligible Vo generation, making it eligible for space missions.

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