MEMelements list of references

This list will no longer be maintained and will be replaced by INTERACTIVE DATABASE
  1. Ham, S.-J., Kim, J.-H., Min, K.-S., Device/Circuit Co-Design Guide for Passive Memristor Array with Non-Linear Current-Voltage Behavior. Journal of Nanoscience and Nanotechnology, Volume 13, Number 9, 2013-09-00, pp. 6451-6454(4).
  2. Gale, E., de Lacy Costello, B., Adamatzky, A., Boolean Logic Gates from a Single Memristor via Low-Level Sequential Logic, Unconventional Computation and Natural Computation, Lecture Notes in Computer Science, 12th International Conference, UCNC 2013, vol.7956, pp. 79-89, Springer London, Milan, Italy, July 1-5, 2013.
  3. Wang, L., Duan, M., Duan, S., Memristive Chebyshev Neural Network and Its Applications in Function Approximation. Mathematical Problems in Engineering, Vol. 2013, pp.7, 2013.
  4. Wang, L., Duan, M., Duan, S., Memristive Perceptron for Combinational Logic Classification. Mathematical Problems in Engineering, Vol. 2013, pp.7, 2013.
  5. Gandhi, G., Aggarwal, V., Chua, L.O., The First Radios Were Made Using Memristors!. Circuits and Systems Magazine, IEEE, vol.13, no.2, pp.8-16, 2ndquarter 2013.
  6. Shin, S., Zheng, L., Weickhardt, G., Cho, S., Kang, S.-M., Compact Circuit Model and Hardware Emulation for Floating Memristor Devices. Circuits and Systems Magazine, IEEE, vol.13, no.2, pp.42-55, 2ndquarter 2013.
  7. Kvatinsky, S., Friedman, E., Kolodny, A., Weiser, U., The Desired Memristor for Circuit Designers. Circuits and Systems Magazine, IEEE, vol.13, no.2, pp.17-22, 2ndquarter 2013.
  8. Chang, T., Yang, Y., Lu, W., Building Neuromorphic Circuits with Memristive Devices. Circuits and Systems Magazine, IEEE, vol.13, no.2, pp.56-73, 2ndquarter 2013.
  9. Sacchetto, D., Gaillardon, P., Zervas, M., Carrara, S., De Micheli, G., Leblebici, Y., Applications of Multi-Terminal Memristive Devices: A Review. Circuits and Systems Magazine, IEEE, vol.13, no.2, pp.23-41, 2ndquarter 2013.
  10. Ascoli, A., Corinto, F., Senger, V., Tetzlaff, R., Memristor Model Comparison. Circuits and Systems Magazine, IEEE, vol.13, no.2, pp.89-105, 2ndquarter 2013.
  11. Serrano-Gotarredona, T., Prodromakis, T., Linares-Barranco, B., A Proposal for Hybrid Memristor-CMOS Spiking Neuromorphic Learning Systems. Circuits and Systems Magazine, IEEE, vol.13, no.2, pp.74-88, 2ndquarter 2013.
  12. Adamatzky, A., Chua, L.O., Memristive Excitable Automata: Structural Dynamics, Phenomenology, Localizations and Conductive Pathways, Advances in Applied Self-Organizing Systems, Advanced Information and Knowledge Processing, pp. 379-398, Springer London, 2013.
  13. Heittmann, A., Noll, T.G., Variability evaluation of feedback circuits used in nanoelectronic Memristive/CMOS circuits. Proceedings of the 23rd ACM international conference on Great lakes symposium on VLSI, pp.137-142, 2013.
  14. Saadeldeen, H., Franklin, D., Long, G., Hill, Ch., Browne, A., Strukov, D., Sherwood, T., Chong, F.T., Memristors for neural branch prediction: a case study in strict latency and write endurance challenges. Proceedings of the ACM International Conference on Computing Frontiers, no.26, pp.10, 2013.
  15. Fang, X.-D., Tang, Y.-H., Wu, J.-J., Zhu, X., Zhou, J., Huang, D., SPICE modeling of flux-controlled unipolar memristive devices. Chinese Physics B, vol. 22, no. 7, pp. 1-6, 2013.
  16. Bao Bo-Cheng, Feng Fei, Dong Wei, Pan Sai-Hu, Voltage-current relationship and equivalent circuit implementation of parallel flux-controlled memristive circuits. Chinese Physics B, vol. 22, no. 6, pp. 1-6, 2013.
  17. Yang, G., Conditioned Reflex Mimic Circuit Design. ECE734 Final Project, University of Wisconsin-Madison, pp. 1-20, Spring 2013.
  18. Kalaev, D., Riess, I., On conditions leading to crossing of I–V curve in metal1|mixed-ionic–electronic-conductor|metal2 devices. Solid State Ionics. vol.241, pp. 17-24, 2013-06-15.
  19. Wen, S., Zeng, Z., Huang, T., Passivity analysis of memristor-based recurrent neural networks with time-varying delays. Journal of the Franklin Institute. In Press, Accepted Manuscript — Note to users, pp.1-19, 2013-06-05.
  20. Gandhi, G., Aggarwal, V., Bipolar electrical switching in metal-metal contacts. arXiv:1306.0942v2 [cond-mat.mtrl-sci], 2013-06-04.
  21. Sah, M.P., Budhathoki, R.K., Yang, Ch., Kim, H., Expandable circuits of mutator-based memcapacitor emulator. International Journal of Bifurcation and Chaos, Vol. 23, No. 05, pp.17, May 2013.
  22. Buscarino, A., Fortuna, L., Frasca, M., Gambuzza, L.V., A gallery of chaotic oscillators based on HP memristor. International Journal of Bifurcation and Chaos, Vol. 23, No. 5, pp.14, May 2013.
  23. Yang, J.J., Williams, R.S., Memristive devices in computing system: Promises and challenges. ACM Journal on Emerging Technologies in Computing Systems (JETC) - Special issue on memory technologies, vol.9, no.2, art.11, pp.1-20, May 2013.
  24. Yusoff, M.M., Ani, M.H., Synthesis and Characterization of ZnO Thin Film Memristor. Advanced Materials Research, Volume 701, Key Engineering Materials III, pp. 172-175, May 2013.
  25. Yang, Y., Choi, S.H., Lu, W., Oxide Heterostructure Resistive Memory. Nano Letters, Article ASAP, May 31, 2013.
  26. Liu, B., Hu, M., Li, H., Mao, Z.-H., Chen, Y., Huang, T., Zhang, W., Digital-assisted noise-eliminating training for memristor crossbar-based analog neuromorphic computing engine. Proceedings of the 50th Annual Design Automation Conference, DAC '13, pp.1-6, 2013-05-29.
  27. Yilmaz, Y., Mazumder, P., Image Processing by a Programmable Grid Compromising Quantum-Dots and Memristors. Nanotechnology, IEEE Transactions on, vol., no., pp., 2013-05-15.
  28. Zhou, J., Yang, X.J., Wu, J.J., Zhu, X., Fang, X.D., Huang, D., A memristor-based architecture combining memory and image processing, Science China Information Sciences, SP Science China Press , pp. 1-12, May 2013.
  29. Duan, S.K., Hu, X.F., Wang, L.D., Li, Ch.D., Analog memristive memory with applications in audio signal processing, Science China Information Sciences, SP Science China Press , pp. 1-15, May 2013.
  30. Mukherjee, C., Hota, M.K., Naskar, D., Kundu, S.C., Maiti, C.K., Resistive switching in natural silk fibroin protein-based bio-memristors. Physica Status Solidi (a), pp.1-9, 2013-05-22.
  31. Huang, Ch.-H., Huang, J.-S., Lai, Ch.-Ch., Huang, H.-W., Lin, S.-J., Chueh, Y.-L., Manipulated transformation of filamentary and homogeneous resistive switching on ZnO thin film memristor with controllable multistate. ACS Appl. Mater. Interfaces, May 24, 2013.
  32. Wen, S., Zeng, Z., Huang, T., Fuzzy modeling and synchronization of different memristor-based chaotic circuits. Physics Letters A. In Press, Uncorrected Proof, 2013-05-24.
  33. Mosad, A.G., Fouda, M.E., Khatib, M.A., Salama, K.N., Radwan, A.G., Improved memristor-based relaxation oscillator. Microelectronics Journal, pp. 1-7, 2013-05-21.
  34. Zhang, J.J., Sun, H.J., Li, Y., Wang, Q., Xu, X.H., Miao, X.S., AgInSbTe memristor with gradual resistance tuning. Applied Physics Letters, vol.102, no.18, pp.183513,183513-4, May 2013.
  35. Hu, S.G., Liu, Y., Chen, T.P., Liu, Z., Yu, Q., Deng, L.J., Yin, Y., Hosaka, S., Emulating the paired-pulse facilitation of a biological synapse with a NiOx-based memristor. Applied Physics Letters, vol.102, no.18, pp.183510,183510-4, May 2013.
  36. Sarwar, S.S., Saqueb, S.A.N., Quaiyum, F., Rashid, A.B.M.H.-U., Memristor-Based Nonvolatile Random Access Memory: Hybrid Architecture for Low Power Compact Memory Design. Access, IEEE, vol.1, no., pp.29-34, 2013-05-10.
  37. Querlioz, D., Bichler, O., Dollfus, P., Gamrat, C., Immunity to Device Variations in a Spiking Neural Network With Memristive Nanodevices. Nanotechnology, IEEE Transactions on, vol.12, no.3, pp.288,295, May 2013.
  38. Atkin, K., An introduction to the memristor. Physics Education, vol. 48, no. 3, 2013-05-00.
  39. Han, C.-R., Lee, S.-J., Oh, K.-S., Cho, K., Memristor-MOS Analog Correlator for Pattern Recognition System. Journal of Nanoscience and Nanotechnology, Volume 13, Number 5, 2013-05-01, pp. 3365-3370(6).
  40. Kavehei, O., Lee, S.-J., Cho, K.-R., Al-Sarawi, S., Abbott, D., A Pulse-Frequency Modulation Sensor Using Memristive-Based Inhibitory Interconnections. Journal of Nanoscience and Nanotechnology, Volume 13, Number 5, 2013-05-01, pp. 3505-3510(6).
  41. Kavehei, O., Cho, K.-R., Lee, S.-J., Al-Sarawi, S., Eshraghian, K., Abbott, D., Integrated Memristor-MOS (M2) Sensor for Basic Pattern Matching Applications. Journal of Nanoscience and Nanotechnology, Volume 13, Number 5, 2013-05-01, pp. 3638-3640(3).
  42. Mohanty, S.P., Memristor: From Basics to Deployment. Potentials, IEEE, vol.32, no.3, pp.34-39, 2013-04-30.
  43. Li, Q., Hu, S., Tang, S., Zeng, G., Hyperchaos and horseshoe in a 4D memristive system with a line of equilibria and its implementation. International Journal of Circuit Theory and Applications, 2013-04-29.
  44. Syu, Y.-E., Chang, T.-Ch., Lou, J.-H., Tsai, T.-M., Chang, K.-Ch., Tsai, M.-J., Wang, Y.-L., Liu, M., Sze, S.M., Atomic-level quantized reaction of HfOx memristor. Applied Physics Letters, vol.102, no.17, 4 pages, 2013-04-29.
  45. Wang, L., Duan, M., Duan, S., Perceptron based on Memristor and Its Applications in Composite Logical Classification, Mathematical Problems in Engineering, Hindawi Publishing Corporation, pp.10, April 2013.
  46. Wang, L., Duan, M., Duan, S., Function Approximation Algorithm Based on Memristive Chebyshev Neural Networks, Mathematical Problems in Engineering, Hindawi Publishing Corporation, pp.7, April 2013.
  47. Pham, V.-T., Buscarino, A., Fortuna, L., Frasca, M., Simple Memristive Time-Delay Chaotic Systems. International Journal of Bifurcation and Chaos. Vol. 23, No. 4, pp.9, April 2013.
  48. Wang, X., Li, Ch., Huang, T., Duan, S., Global exponential stability of a class of memristive neural networks with time-varying delays, Neural Computing and Applications, Springer-Verlag, April 2013.
  49. Lee, K.-H., Lee, S.-J., Kim, S.-M., Cho, K., Memristor-Based Programmable Logic Array (PLA) and Analysis as Memristive Networks. Journal of Nanoscience and Nanotechnology, Volume 13, Number 5, 2013-05-01, pp. 3265-3269(5).
  50. Guo, J., Zhou, Y., Yuan, H., Zhao, D., Yin, Y., Hai, K., Peng, Y., Zhou, W., Tang, D., Reconfigurable resistive switching devices based on individual tungsten trioxide nanowires. AIP Advances, vol.3, no.4, 7 pages, 2013-04-30.
  51. Zoolfakar, A.S., Ab Kadir, R., Rani, R.A., Balendhran, S., Liu, X., Kats, E., Bhargava, S., Bhaskaran, M., Sriram, S., Zhuiykov, S., O'Mullane, A.P., Kalantar-Zadeh, K., Engineering electrodeposited ZnO films and their memristive switching performance. Physical Chemistry Chemical Physics, The Royal Society of Chemistry, 2013-04-23.
  52. Gaba, S., Sheridan, P., Zhou, J., Choi, S., Lu, W., Stochastic Memristive Devices for Computing and Neuromorphic Applications. arXiv:1304.5993v1 [cond-mat.other], 2013-04-22.
  53. Awais, M.N., Kim, H.Ch., Doh, Y.H., Choi, K.H., ZrO2 Flexible Printed Resistive (Memristive) Switch through Electrohydrodynamic Printing Process. Thin Solid Films. Available online 2013-04-17.
  54. Yang, X., Chen, W., Wang, F.Z. A Memristor-CAM (Content Addressable Memory) Cell: New Design and Evaluation. International Conference on Computer Science and Information Technology, 2013-04-16.
  55. Zhang, L., Chen, Z., Yang, J.J., Wysocki, B., McDonald, N., Chen, Y., A compact modeling of TiO2-TiO2–x memristor. Applied Physics Letters, vol.102, no.15, 4 pages, 2013-04-16.
  56. Savel'ev, S.E., Marchesoni, F., Bratkovsky, A.M., Perfect memristor: non-volatility, switching and negative differential resistance. arXiv:1304.4501v1 [cond-mat.mes-hall], 2013-04-16.
  57. Yanagida, T., Nagashima, K., Oka, K., Kanai, M., Klamchuen, A., Park, B.H., Kawai, T., Scaling Effect on Unipolar and Bipolar Resistive Switching of Metal Oxides. Scientific Reports, vol.3, no. 1657, pp.1-7, published online 15 April 2013.
  58. Gomez-Marlasca, F., Ghenzi, N., Leyva, A.G., Albornoz, C., Rubi, D., Stoliar, P., Levy, P., Modeling electronic transport mechanisms in metal-manganite memristive interfaces. Journal of Applied Physics, vol.113, no.14, 11 April 2013.
  59. Zidan, M.A., Omran, h., Smith, C., Syed, A., Radwan, A.G., Salama, K.N., A family of memristor-based reactance-less oscillators. International Journal of Circuit Theory and Applications, 2013-04-11.
  60. DeIonno, E., Looper, M.D., Osborn, J.V., Palko, J.W., Displacement Damage in TiO2 Memristor Devices. Circuits and Systems II: Express Briefs, IEEE Transactions on, vol.60, no.2, pp.1379 - 1383, 2013-04-11.
  61. Biolek, Z., Biolek, D., Biolková, V., Analytical Computation of the Area of Pinched Hysteresis Loops of Ideal Mem-Elements. Radioengineering, vol.22, no.1, pp.132-135, April 2013.
  62. Gale, E., de Lacy Costello, B., Adamatzky, A., Design of a hybrid robot control system using memristor-model and ant-inspired based information transfer protocols. International Conference on Robotics and Automation (ICRA) 2013, 2013-05-10.
  63. Li, M., Deng, H., Wei, M., Qiu, W.W., Yao, J.Q., Deng, X.R., Gao, Q.L., Jiang, J.T., Wen, G.J., The Recent Advances of Research on Memristor and Memristive Characteristic Devices. Advanced Materials Research, Volume 685, Advanced Materials Research III, pp. 201-206, April 2013.
  64. Budhathoki, R.K., Sah, M.Pd., Adhikari, S.P., Kim, H., Chua, L.O., Composite Behavior of Multiple Memristor Circuits. Circuits and Systems I: Regular Papers, IEEE Transactions on, vol., no., pp.1-13, 2013-04-08.
  65. Li, Y., Zhong, Y., Xu, L., Zhang, J., Xu, X., Sun, H., Miao, X., Ultrafast Synaptic Events in a Chalcogenide Memristor. Scientific Reports, vol.3, no. 1619, pp.1-7, published online 08 April 2013.
  66. Shin, S., Kim, K., Kang, S.-M., Resistive Computing: Memristors-Enabled Signal Multiplication. Circuits and Systems I: Regular Papers, IEEE Transactions on, vol., no., pp.1-9, 2013-04-08.
  67. Vourkas, I., Sirakoulis, G.Ch., Modeling earthquake activity using a memristor-based cellular grid. The Smithsonian/NASA Astrophysics Data System, Geophysical Research Abstracts, Vol.15, 7-12 April, 2013.
  68. Wu, H., Zhang, L., Almost periodic solution for memristive neural networks with time-varying delays. Journal of Applied Mathematics. Preprint submitted to Elsevier Science, pp. 1-22, 2013-04-05.
  69. Zheng, X., Yan, Y.J., Di Ventra, M., Kondo memory in driven strongly-correlated quantum dots. arXiv:1304.2007v1 [cond-mat.str-el], 2013-04-07.
  70. Zhang, G., Shen, Y., Wang, L., Global anti-synchronization of a class of chaotic memristive neural networks with time-varying delays. Neural Networks. Available online 2013-04-06.
  71. Gale, E., de Lacy Costello, B., Adamatzky, A., Does the D.C. response of memristors allow robotic short-term memory and a possible route to artificial time perception?. Conference or Workshop Item, 2013-04-04.
  72. Sillin, H.O., Sandouk, E.J., Avizienis, A.V., Aono, M., Stieg, A.Z., Gimzewski, J.K., Benchtop Fabrication of Memristive Atomic Switch Networks. arXiv:1304.1243v1 [cond-mat.mtrl-sci], 2013-04-04.
  73. Wu, A., Zeng, Z., Chen, J., Analysis and design of winner-take-all behavior based on a novel memristive neural network, Neural Computing and Applications, Springer-Verlag London, pp.6, 2013-04-03.
  74. Fouda, M.E., Radwan, A.G., Memristor-based voltage-controlled relaxation oscillators. International Journal of Circuit Theory and Applications, pp. 11, 2013-04-01.
  75. Ascoli, A., Corinto, F., Memristor models in a chaotic neural circuit. International Journal of Bifurcation and Chaos. Vol. 23, No. 3, March 2013.
  76. Soltiz, M., Kudithipudi, D., Merkel, C., Rose, G.S., Pino, R.E., Memristor-Based Neural Logic Blocks for Non-Linearly Separable Functions. IEEE Transactions on Computers, IEEE computer Society Digital Library, 2013-03-28.
  77. Yu, D.S., Liang, Y., Chen, H., Iu, H.H.C., Design of a Practical Memcapacitor Emulator Without Grounded Restriction. Circuits and Systems II: Express Briefs, IEEE Transactions on, vol., no., pp.1-5, 2013-03-26.
  78. Fouda, M.E., Khatib, M.A., Mosad, A.G., Radwan, A.G, Generalized Analysis of Symmetric and Asymmetric Memristive Two-Gate Relaxation Oscillators . Circuits and Systems I: Regular Papers, IEEE Transactions on, vol., no., 2013-03-18.
  79. Riaza, R., DAEs in Circuit Modelling: A Survey, Surveys in Differential-Algebraic Equations I, Differential-Algebraic Equations Forum, Springer-Verlag, pp. 97-136, 2013.
  80. Koeberl, P., Kocabas, U., Sadeghi, A.-R., Memristor PUFs: A new generation of memory-based Physically Unclonable Functions. Design, Automation & Test in Europe Conference & Exhibition (DATE), 2013, vol., no., pp.428-431, 18-22 March 2013.
  81. Ye, Z., Wu, S.H.M., Prodromakis, T., Computing shortest paths in 2D and 3D memristive networks. arXiv:1303.3927v1, 2013-03-15.
  82. Pabst, O., Schmidt, T., Frequency dependent rectifier memristor bridge used as a programmable synaptic membrane voltage generator. Journal of Electrical Bioimpedance, vol.4, pp.23-32, 2013-03-15.
  83. Rudra, M.R., Pieper, R.J., Memristor Drift Model based on conservation of mobile vacancies. System Theory (SSST), 2013 45th Southeastern Symposium on, vol., no., pp.12-16, 2013-03-11.
  84. Hermiz, J., Chang, T., Du, Ch., Lu, W., Interference and memory capacity effects in memristive systems. Applied Physics Letters, vol.102, no.8, pp.083106,083106-5, 2013-03-07.
  85. Demming, A., Nanomemory: information and ingenuity. Nanotechnology, vol. 24, no. 13, 2013-04-05.
  86. Ahamed, A.I., Lakshmanan, M., Nonsmooth Bifurcations, Transient Hyperchaos and Hyperchaotic Beats in a Memristive Murali-Lakshmanan-Chua Circuit. arXiv:1303.3410v1 [nlin.CD], 2013-03-14.
  87. Mahmoudi, H., Windbacher, T., Sverdlov, V., Selberherr, S., Implication logic gates using spin-transfer-torque-operated magnetic tunnel junctions for intrinsic logic-in-memory. Solid-State Electronics. Available online 2013-03-14.
  88. Lim, Ch.K.K., Prodromakis, T., Computing Motion with 3D Memristive Grids. arXiv:1303.3067v1 [cs.CV], 2013-03-13.
  89. Wang, F.Z., Chua, L.O., Yang, X., Helian, N., Tetzlaff, R., Schmidt, T., Li,C., Carrasco, J.M.G., Chen, W., Chu, D., Adaptive Neuromorphic Architecture (ANA). Neural Networks. Available online 2013-03-13.
  90. Shuai, Y., Du, N., Ou, X., Luo, W., Zhou, S., Schmidt, O.G., Schmidt, H., Improved retention of nonvolatile bipolar BiFeO3 resistive memories validated by memristance measurements. Physica status solidi (c), pp. 1- 4, 2013-03-13.
  91. Valov, I., Linn, E., Tappertzhofen, S., Schmelzer, S., van den Hurk, J., Lentz, F., Waser, R., Nanobatteries in redox-based resistive switches require extension of memristor theory. arXiv:1303.2589v1 [cond-mat.mtrl-sci], 2013-03-11.
  92. Hu, Z., Li, Q., Li, M., Wang, Q., Zhu, Y., Liu, X., Zhao, X., Liu, Y., Dong, S., Ferroelectric memristor based on Pt/BiFeO3/Nb-doped SrTiO3 heterostructure. Applied Physics Letters, vol.102, no.10, 5 pages, 2013-03-11.
  93. Sun, J., Shen, Y., Yin, Q., Xu, Ch., Compound synchronization of four memristor chaotic oscillator systems and secure communication . Chaos, vol.23, no.1, 2013-03-11.
  94. Huang, D., Wu, J.-J., Tang, Y.-H., Analysis and modeling of resistive switching mechanisms oriented to resistive random-access memory. Chinese Physics B, vol. 22, no. 3, 2013.
  95. Younis, A., Chu, D., Lin,X., Yi, J., Dang, F., Li,S., High Performance Nano-composite Based Memristor with Controlled Quantum Dots as Charge Traps. ACS Appl. Mater. Interfaces, March 7, 2013.
  96. Mejia, C.H., Reyes, A.S., Vazquez-Leal, H., A family of memristive transfer functions of negative feedback nullor-based amplifiers. Circuits and Systems (LASCAS), 2013 IEEE Fourth Latin American Symposium on, vol., no., pp.1,4, Feb. 27 2013-March 1 2013.
  97. Wang, G., Shen, Y., Exponential synchronization of coupled memristive neural networks with time delays, Neural Computing and Applications, Springer-Verlag, 2013-03-02.
  98. Dongale, T.D., An elementary note on skin hydration measurement using memristive effect. Health Informatics - An International Journal (HIIJ), vol.2, no.1, pp.15-20, February 2013.
  99. ElSamman, A.H., Radwan, A.G., Madian, A.H., The modified single input Op-Amps memristor based oscillator. Communications, Signal Processing, and their Applications (ICCSPA), 2013 1st International Conference on, vol., no., pp.1,4, 2013-02-12.
  100. Pham, V.-T., Memristor-based and time-delay nonlinear circuits. Doctoral Thesis, Universita' di Catania. ARCHIVIA, 131 p., 2013-02-12.
  101. Shaltoot, A.H., Madian, A.H., Memristor-based modified recoded-multiplicand systolic serial-parallel multiplier. Communications, Signal Processing, and their Applications (ICCSPA), 2013 1st International Conference on, vol., no., pp.1,5, 2013-02-12.
  102. Di Ventra, M., Pershin, Y.V., On the physical properties of memristive, memcapacitive, and meminductive systems. arXiv:1302.7063v1 [cond-mat.mes-hall], 2013.
  103. Indiveri, G., Linares-Barranco, B., Legenstein, R., Deligeorgis, G., Prodromakis, T., Integration of nanoscale memristor synapses in neuromorphic computing architectures. arXiv:1302.7007v1 [cs.ET], 2013.
  104. Yakopcic, Ch., Taha, T.M., Subramanyam, G., Hybrid Crossbar Architecture for a Memristor Based Cache. arXiv:1302.6515v1 [cs.AR], 2013.
  105. Kannan, S., Rajendran, J., Karri, R., Sinanoglu, O., Sneak-path Testing of Memristor-based Memories. VLSI Design and 2013 12th International Conference on Embedded Systems (VLSID), 2013 26th International Conference on, vol., no., pp.386,391, 5-10 Jan. 2013.
  106. Itoh, M., Chua, L.O., Duality of Memristor Circuits. International Journal of Bifurcation and Chaos. Vol. 23, No. 01, January 2013.
  107. Kvatinsky, S., Nacson, Y.H., Etsion, Y., Friedman, E.G., Kolodny, A., Memristor-Based Multithreading, IEEE Computer Architecture Letters, vol., no., pp., Jan 2013.
  108. Ziegler, M., Ochs, K., Hansen, M., Kohlstedt, H., An electronic implementation of amoeba anticipation, Applied Physics A, Springer-Verlag, 2013-02-16.
  109. Gómez-Polo, C., Soto-Armañanzas, J., Olivera, J., Perez-Landazabal, J.I., Larumbe, S., Miranda, M.A., de la Cruz, C., Mendizabal, I., A Corili, S., Gil, A., Multifunctional sensor based on a hybrid ferromagnetic/sol-gel TiO2 coating nanostructure. Industrial & Engineering Chemistry Research, February 18, 2013.
  110. Du, N., Shuai, Y., Luo, W., Mayr, Ch., Schuffny, R., Schmidt, O.G., Schmidt, H., Practical guide for validated memristance measurements. Review of Scientific Instruments, vol.84, no.2, pp.023903-023903-7, Feb 2013.
  111. Liu, G.H., Wang, G.Y., An Improved SPICE Macromodel of Memristor for General Applications. Applied Mechanics and Materials, Volumes 303 - 306, Sensors, Measurement and Intelligent Materials, pp. 1854-1858, February 2013.
  112. Okhay, O., Krishna, R., Salimian, M.,Titus, E., Gracio, J.,Guerra, L.M., Ventura, J., Conductivity enhancement and resistance changes in polymer films filled with reduced graphene oxide. Journal of Applied Physics, vol.113, no.6, 12 February 2013.
  113. Kavehei, O., Hosung, Ch.,Ranasinghe, D., Skafidas, S., mrPUF: A Memristive Device based Physical Unclonable Function. arXiv:1302.2191v1 [cond-mat.other], 2013.
  114. Wang, F. Z., A Triangular Periodic Table of Elementary Circuit Elements. Circuits and Systems I: Regular Papers, IEEE Transactions on, vol., no., pp., 2013.
  115. Wang, L., Fang, X., Duan, S., Liao, X., PID Controller Based on Memristive CMAC Network. Abstract and Applied Analysis, Vol. 2013, pp.7, 2013.
  116. Mohammad, B., Homouz, D., Elgabra, H., Robust Hybrid Memristor-CMOS Memory: Modeling and Design. Very Large Scale Integration (VLSI) Systems, IEEE Transactions on, vol., no., pp., 2013.
  117. Xu, H., Xia, Y., Yin, K., Lu, J., Yin, Q., Sun, L., Liu, Z., The chemically driven phase transformation in a memristive abacus capable of calculating decimal fractions. Scientific Reports, vol.11, no. 6, pp.1-4, published online 06 February 2013.
  118. Thomas, A., Memristor-based neural networks. Journal of Physics D: Applied Physics, vol. 46, no. 9, 2013.
  119. Merrikh-Bayat, F., Mirebrahimi, N., Bayat, F., Circuit proposition for copying the value of a resistor into a memristive device supported by HSPICE simulation. arXiv:1302.1005v1 [cs.OH], 2013.
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