Solid state electrolytes fabricated with chalcogenide glass (ChG) are considered viable candidates for the next generation of non-volatile memory technologies. These glasses, which are composed of group IV and/or group V elements with those of group VI chalcogens (S, Se, and Te), are excellent metal ion conductors. Because of this property, the resistance across structures composed of ChG films sandwiched between active metal (e.g., Ag) and inert metal (e.g., Ni) electrodes can be switched upon the application of sufficient bias, thereby enabling memristive action. In this paper, the effects of 60Co gamma-ray irradiations on Ag/Ge30Se70 test structures are investigated. The results show that exposure to high-energy photons can trigger the t...
For decades, various radiation-detecting materials have been extensively researched, to find a bette...
We present results on structural and compositional changes in GexSe1-x chalcogenide glasses under Ar...
© 2016 Elsevier Inc. All rights reserved.A review of recent results on the structural modification o...
Solid state electrolytes fabricated with chalcogenide glass (ChG) are considered viable candidates f...
In this study we demonstrate the potential radiation sensing capabilities of a metal-chalcogenide gl...
Solid electrolytes based on chalcogenide glasses have been one of the most promising candidates for ...
abstract: Chalcogenide glass (ChG) materials have gained wide attention because of their application...
Data about gamma radiation induced effects in Ge40Se60 chalcogenide thin films and radiation induced...
In this paper, previous work on chalcogenide-glass (ChG)-based radiation sensors is extended to incl...
This work focuses on the study of Ge rich phases in the Ge–Se chalcogenide glass system. Radiation i...
Conductive bridge resistance change (CBRAM) memory devices are one of the premier emerging technolog...
We present data on radiation-induced effects in chalcogenide glasses that also trigger radiation ind...
We explore the radiation induced effects in thin films from the Ge-Se to Ge-Te systems accompanied w...
Continued scaling of memory devices has produced many issues for the current foremost non-volatile m...
Chalcogenide glasses are the advanced materials of choice for the emerging nanoionic memory devices ...
For decades, various radiation-detecting materials have been extensively researched, to find a bette...
We present results on structural and compositional changes in GexSe1-x chalcogenide glasses under Ar...
© 2016 Elsevier Inc. All rights reserved.A review of recent results on the structural modification o...
Solid state electrolytes fabricated with chalcogenide glass (ChG) are considered viable candidates f...
In this study we demonstrate the potential radiation sensing capabilities of a metal-chalcogenide gl...
Solid electrolytes based on chalcogenide glasses have been one of the most promising candidates for ...
abstract: Chalcogenide glass (ChG) materials have gained wide attention because of their application...
Data about gamma radiation induced effects in Ge40Se60 chalcogenide thin films and radiation induced...
In this paper, previous work on chalcogenide-glass (ChG)-based radiation sensors is extended to incl...
This work focuses on the study of Ge rich phases in the Ge–Se chalcogenide glass system. Radiation i...
Conductive bridge resistance change (CBRAM) memory devices are one of the premier emerging technolog...
We present data on radiation-induced effects in chalcogenide glasses that also trigger radiation ind...
We explore the radiation induced effects in thin films from the Ge-Se to Ge-Te systems accompanied w...
Continued scaling of memory devices has produced many issues for the current foremost non-volatile m...
Chalcogenide glasses are the advanced materials of choice for the emerging nanoionic memory devices ...
For decades, various radiation-detecting materials have been extensively researched, to find a bette...
We present results on structural and compositional changes in GexSe1-x chalcogenide glasses under Ar...
© 2016 Elsevier Inc. All rights reserved.A review of recent results on the structural modification o...