Preface
xxiii
References
1. M.M. Waldrop, The chips are down for Moore’s law. Nat. News 530(7589), 144
(2016)
2. R. Stanley Williams, What’s next? [The end of Moore’s law]. Comput. Sci.
Eng. 19(2), 7–13 (2017)
3. M.A. Zidan, J.P. Strachan, W.D. Lu, The future of electronics based on
memristive systems. Nat. Electron. 1(1), 22 (2018)
4. L.O. Chua, Memristor-The missing circuit element. IEEE Trans. Circuit Theory
18(5), 507–519 (1971)
5. D.B. Strukov, G.S. Snider, D.R. Stewart, R.S. Williams, The missing memristor
found. Nature 453(7191), 80–83 (2008)
6. P. Mazumder, S.M. Kang, Waser, R. (Eds.), Special issue on memristors:
devices, models, and applications. Proc. IEEE 100(6), (2012)
7. R. Tetzlaff (Ed.)., Memristors and Memristive Systems (Springer, New York,
2014)
8. L. Chua, G. Sirakoulis, A. Adamatzky (Eds.), Handbook of Memristor Networks. Vol. 1 and 2 (Springer, New York, 2019)
9. C. Li, Z. Wang, M. Rao, D. Belkin, W. Song, H. Jiang, P. Yan, Y. Li, P. Lin,
M. Hu, et al., Long short-term memory networks in memristor crossbar arrays.
Nat. Mach. Intell. 1(1), 49 (2019)
10. O. Krestinskaya, A.P. James, L.O. Chua, Neuromemristive circuits for edge
computing: a review. IEEE Trans. Neural Netw. Learn. Syst. 1–20 (2019).
https://doi.org/10.1109/TNNLS.2019.2899262
11. A. Pérez-Tomás, Functional oxides for photoneuromorphic engineering: toward
a solar brain. Adv. Mater. Interfaces 1900471 (2019).
12. S.H. Jo, T. Chang, I. Ebong, B.B. Bhadviya, P. Mazumder, W. Lu, Nanoscale
memristor device as synapse in neuromorphic systems. Nano Lett. 10(4), 1297–
1301 (2010)
13. S. Kumar, J.P. Strachan, R. Stanley Williams, Chaotic dynamics in nanoscale
NbO 2 Mott memristors for analogue computing. Nature 548(7667), 318 (2017)
14. F. Corinto, M. Forti, Memristor circuits: flux–charge analysis method. IEEE
Trans. Circuits Syst. I Regul. Pap. 63(11), 1997–2009 (2016)
15. F. Corinto, M. Forti, Memristor circuits: bifurcations without parameters. IEEE
Trans. Circuits Syst. I Regul. Pap. 64(6), 1540–1551 (2017)
16. F. Corinto, M. Forti, Memristor circuits: pulse programming via invariant
manifolds. IEEE Trans. Circuits Syst. I Regul. Pap. 65(4), 1327–1339 (2018)
17. F. Corinto, M. Forti, Complex dynamics in arrays of memristor oscillators via
the flux–charge method. IEEE Trans. Circuits Syst. I Regul. Pap. 65(3), 1040–
1050 (2017)
18. F. Corinto, M. Gilli, M. Forti, Flux-charge description of circuits with nonvolatile switching memristor devices. IEEE Trans. Circuits Syst. II Expr. Briefs
65(5), 642–646 (2018)
Précédent

- 22/463

Suivant