CROSS-DISCIPLINARY PHYSICS AND RELATED AREAS OF SCIENCE AND TECHNOLOGY |
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Amorphous InGaZnO$_{4}$ Neuron Transistors with Temporal and Spatial Summation Function |
Pei-Fu Du1,2, Ping Feng1**, Xiang Wan1, Yi Yang1, Qing Wan1,2** |
School of Electronic Science and Engineering, and Collaborative Innovation Center of Advanced Microstructures, Nanjing University, Nanjing 210093 2School of Electronics and information, Hangzhou Dianzi University, Hangzhou 310018
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Cite this article: |
Pei-Fu Du, Ping Feng, Xiang Wan et al 2017 Chin. Phys. Lett. 34 058502 |
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Abstract Amorphous InGaZnO$_{4}$ neuron transistors based on multi-gate electric-double-layer modulation are fabricated by photolithography processes. The sweeping rate dependent output current and hysteresis loop are observed due to the proton dynamic process in the SiO$_{2}$ nanogranular electrolyte. Temporal summation such as paired-pulse facilitation is mimicked in the neuron transistor with one presynaptic input. At the same time, supralinear spatial summation of two presynaptic inputs is also successfully mimicked in the neuron transistor with two presynaptic inputs. Our InGaZnO$_{4}$ neuron transistors with temporal and spatial summation function are interesting for the brain-inspired neuromorphic system.
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Received: 08 March 2017
Published: 29 April 2017
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PACS: |
85.30.Tv
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(Field effect devices)
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77.55.+f
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73.50.-h
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(Electronic transport phenomena in thin films)
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72.20.-i
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(Conductivity phenomena in semiconductors and insulators)
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Fund: Supported by the National Science Foundation for Distinguished Young Scholars of China under Grant No 61425020, the Zhejiang Provincial Natural Science Foundation of China under Grant No LR13F040001, and the National Natural Science Foundation of China under Grant No 51502131. |
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[1] | Zador A M 2000 Nat. Neurosci. 3 1167 | [2] | Hopfield J J 1999 Rev. Mod. Phys. 71 S431 | [3] | Spruston N and Kath W L 2004 Nat. Neurosci. 7 567 | [4] | Brown T H, Kairiss E W and Keenan C L 1990 Annu. Rev. Neurosci. 13 475 | [5] | Magee J C 2000 Nat. Rev. Neurosci. 1 181 | [6] | Polsky A, Mel B W and Schiller J 2004 Nat. Neurosci. 7 621 | [7] | Jeong D S, Kim I, Ziegler M and Kohlsted H 2013 RSC Adv. 3 3169 | [8] | Kuzum D, Yu S M and Wong H S P 2013 Nanotechnology 24 382001 | [9] | Ha S D and Ramanathan S 2011 J. Appl. Phys. 110 071101 | [10] | Seo K, Kim I, Jung S, Jo M, Park S, Park J, Shin J, Biju K P, Kong J, Lee K, Lee B and Hwang H 2011 Nanotechnology 22 254023 | [11] | Yu S, Wu Y, Jeyasingh R, Kuzum D and Wong H S P 2011 IEEE Trans. Electron Devices 58 2729 | [12] | Yang J J, Strukov D B and Stewart D R 2012 Nat. Nanotechnol. 8 13 | [13] | Alibart F, Pleutin S, Bichler O, Gamrat C, Serrano-Gotarredona T, Linares-Barranco B and Vuillaume D 2012 Adv. Funct. Mater. 22 609 | [14] | Yang Y, Gao P, Gaba S, Chang T, Pan X and Lu W 2012 Nat. Commun. 3 732 | [15] | Li Y, Zhong Y, Zhang J, Xu L, Wang Q, Sun H, Tong H, Cheng X and Miao X 2014 Sci. Rep. 4 4906 | [16] | Ohno T, Hasegawa T, Tsuruoka T, Terabe K, Gimzewski J K and Aono M 2011 Nat. Mater. 10 591 | [17] | Shi J, Ha S D, ZhouY, Schoofs F and Ramanathan S 2013 Nat. Commun. 4 2676 | [18] | Kim K, Chen C, Quyen T, Shen A M and ChenY 2013 Adv. Mater. 25 1693 | [19] | Shen A M, Chen C, Kim K, Cho B, Tudor A and Chen Y 2013 ACS Nano 7 6117 | [20] | Zhu L Q, Wan C J, Guo L Q, Shi Y and Wan Q 2014 Nat. Commun. 5 3158 | [21] | Zhou J, Liu N, Zhu L, Shi Y and Wan Q 2015 IEEE Electron Device Lett. 36 198 | [22] | Shibata T and Ohmi T 1992 IEEE Trans. Electron Devices 39 1444 | [23] | Shibata T and Ohmi T 1993 IEEE Trans. Electron Devices 40 974 | [24] | Kosaka H, Shibata T, Ishii H and Ohmi T 1995 IEEE Trans. Electron Devices 42 135 | [25] | Zucker R S and Regehr W G 2002 Annu. Rev. Physiol. 64 355 | [26] | Abbott L F and Regehr W G 2004 Nature 431 796 | [27] | Citri A and Malenka R C 2008 Neuropsychopharmacol. 33 18 | [28] | Buonomano D V and Maass W 2009 Nat. Rev. Neurosci. 10 113 | [29] | Fortune E S and Rose G J 2001 Trends Neurosci. 24 381 | [30] | Mauk M D and Buonomano D V 2004 Annu. Rev. Neurosci. 27 307 | [31] | Ito H T and Schuman E M 2007 Front. Neural Circuits 1 1 | [32] | Losonczy A and Magee J C 2006 Neuron 50 291 | [33] | Tran-Van-Minh A, Caze R D, Abrahamsson T, Cathala L, Gutkin B S and Digregorio D A 2015 Front. Cell. Neurosci. 9 1 |
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