Polarity-dependent memory switching and behavior of Ag dendrite in Ag-photodoped amorphous As2S3 films
- 1 June 1976
- journal article
- conference paper
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 47 (6) , 2767-2772
- https://doi.org/10.1063/1.322942
Abstract
High cyclical reproducibility in polarity-dependent switching and memory function was obtained. Switching and memory effect seem to occur when both electrodes (Mo and Ag) are bridged by Ag dendrite which originates as the result of Ag photodoping. The combination of Ag electrode and another kind of electrode material may be responsible for the polarity-dependent switching and memory by the help of appropriate voltage shapes. Behavior of Ag dendrite was observed in relation to the similar electrical characteristics in a modified device structure. No thermal effects may be contained in the functional processes. Temperature dependence and frequency characteristics of the device resistances are measured and found to support the existence of the Ag dendrite and its role in the function in the original device. Switching transients in addition to the durability show the availability of the device in the compatibility with the magnetic core memory.This publication has 8 references indexed in Scilit:
- Switching and polarity-dependent memory effects in Se-SnO2 and Se-In2O3 thin-film devicesJournal of Applied Physics, 1975
- Photo- and thermal-diffusions of metals into As2S3 glassSolid State Communications, 1973
- Memory switching phenomena in thin films of the S–Se–Te systemJournal of Applied Physics, 1973
- Amorphous semiconductors for switching, memory, and imaging applicationsIEEE Transactions on Electron Devices, 1973
- An AlN Switchable Memory Resistor Capable of a 20-MHz Cycling Rate and 500-picosecond Switching TimeIBM Journal of Research and Development, 1973
- Polarized Memory Effect Observed on Se-SnO2 SystemJapanese Journal of Applied Physics, 1972
- Polarized (letter ‘8’) memory effects in hetero-systems and non hetero-systemsSolid State Communications, 1972
- On the energy spectrum of vitreous arsenic sulphideJournal of Non-Crystalline Solids, 1970