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      Finite-time stability and synchronization for memristor-based fractional-order Cohen-Grossberg neural network

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          The missing memristor found.

          Anyone who ever took an electronics laboratory class will be familiar with the fundamental passive circuit elements: the resistor, the capacitor and the inductor. However, in 1971 Leon Chua reasoned from symmetry arguments that there should be a fourth fundamental element, which he called a memristor (short for memory resistor). Although he showed that such an element has many interesting and valuable circuit properties, until now no one has presented either a useful physical model or an example of a memristor. Here we show, using a simple analytical example, that memristance arises naturally in nanoscale systems in which solid-state electronic and ionic transport are coupled under an external bias voltage. These results serve as the foundation for understanding a wide range of hysteretic current-voltage behaviour observed in many nanoscale electronic devices that involve the motion of charged atomic or molecular species, in particular certain titanium dioxide cross-point switches.
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            Memristor-The missing circuit element

            L P Chua (1971)
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              Differential Equations with Discontinuous Righthand Sides

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                Author and article information

                Journal
                The European Physical Journal B
                Eur. Phys. J. B
                Springer Science and Business Media LLC
                1434-6028
                1434-6036
                September 2016
                September 21 2016
                September 2016
                : 89
                : 9
                Article
                10.1140/epjb/e2016-70337-6
                a1fc1dc1-9860-4fd6-b34c-7804fd6a7eef
                © 2016

                http://www.springer.com/tdm

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