A physics-based model of electrical conduction decrease with time in amorphous Ge2Sb2Te5

I Tortorelli, F Pellizzer - Journal of Applied Physics, 2009 - pubs.aip.org
The time-stability of the electrical characteristics of chalcogenide materials is one of the most
important issues for their use in nonvolatile solid state memory applications. In particular the …

[引用][C] A physics-based model of electrical conduction decrease with time in amorphous Ge2Sb2Te5

M Boniardi, A Redaelli, A Pirovano… - JOURNAL OF …, 2009 - re.public.polimi.it
A physics-based model of electrical conduction decrease with time in amorphous Ge2Sb2Te5
IRIS IRIS Home Sfoglia Macrotipologie & tipologie Autore Titolo Riviste Tipologia Data di …

A physics-based model of electrical conduction decrease with time in amorphous Ge2Sb2Te5

M Boniardi, A Redaelli, A Pirovano, I Tortorelli… - Journal of Applied …, 2009 - elibrary.ru
The time-stability of the electrical characteristics of chalcogenide materials is one of the most
important issues for their use in nonvolatile solid state memory applications. In particular the …

A physics-based model of electrical conduction decrease with time in amorphous Ge2Sb2Te5

M Boniardi, A Redaelli, A Pirovano… - Journal of Applied …, 2009 - ui.adsabs.harvard.edu
The time-stability of the electrical characteristics of chalcogenide materials is one of the most
important issues for their use in nonvolatile solid state memory applications. In particular the …

A physics-based model of electrical conduction decrease with time in amorphous Ge2Sb2Te5

M Boniardi, A Redaelli, A Pirovano, I Tortorelli… - Journal of Applied …, 2009 - pubs.aip.org
The time-stability of the electrical characteristics of chalcogenide materials is one of the most
important issues for their use in nonvolatile solid state memory applications. In particular the …