Ultra-Strong Comprehensive Radiation Effect Tolerance in Carbon Nanotube Electronics

被引:15
|
作者
Zhu, Maguang [1 ,2 ]
Lu, Peng [3 ]
Wang, Xuan [4 ,5 ]
Chen, Qian [4 ,5 ]
Zhu, Huiping [3 ]
Zhang, Yajie [1 ,2 ]
Zhou, Jianshuo [1 ,2 ]
Xu, Haitao [6 ]
Han, Zhengsheng [3 ,5 ]
Han, Jianwei [4 ,5 ]
Chen, Rui [4 ,5 ]
Li, Bo [3 ]
Peng, Lian-Mao [1 ,2 ,6 ]
Zhang, Zhiyong [1 ,2 ,6 ]
机构
[1] Peking Univ, Sch Elect, Key Lab Phys & Chem Nanodevices, Beijing 100871, Peoples R China
[2] Peking Univ, Ctr Carbon Based Elect, Beijing 100871, Peoples R China
[3] Chinese Acad Sci, Inst Microelect, Beijing 100029, Peoples R China
[4] Chinese Acad Sci, Natl Space Sci Ctr, Beijing, Peoples R China
[5] Univ Chinese Acad Sci, Beijing 100049, Peoples R China
[6] Beijing Inst Carbon Based Integrated Circuits, Beijing 100195, Peoples R China
基金
中国博士后科学基金;
关键词
carbon nanotubes; displacement damages; radiation tolerance; single event effect; total ionizing doses; INTEGRATED-CIRCUITS; HEAVY-ION; PERFORMANCE; EQUIVALENT; DEVICES;
D O I
10.1002/smll.202204537
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Carbon nanotube (CNT) field-effect transistors (FETs) have been considered ideal building blocks for radiation-hard integrated circuits (ICs), the demand for which is exponentially growing, especially in outer space exploration and the nuclear industry. Many studies on the radiation tolerance of CNT-based electronics have focused on the total ionizing dose (TID) effect, while few works have considered the single event effects (SEEs) and displacement damage (DD) effect, which are more difficult to measure but may be more important in practical applications. Measurements of the SEEs and DD effect of CNT FETs and ICs are first executed and then presented a comprehensive radiation effect analysis of CNT electronics. The CNT ICs without special irradiation reinforcement technology exhibit a comprehensive radiation tolerance, including a 1 x 10(4) MeVcm(2) mg(-1) level of the laser-equivalent threshold linear energy transfer (LET) for SEEs, 2.8 x 10(13) MeV g(-1) for DD and 2 Mrad (Si) for TID, which are at least four times higher than those in conventional radiation-hardened ICs. The ultrahigh intrinsic comprehensive radiation tolerance will promote the applications of CNT ICs in high-energy solar and cosmic radiation environments.
引用
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页数:11
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