The hydrodynamic model for the trap-limited conduction regime in amorphous materials, used in the description of phase-change memory devices, is re-examined from the viewpoint of numerical efficiency. Among other features, the approach presented here avoids the calculation of integrals involving the distribution function during the iterative solution, and makes the proposed solution scheme suitable for incorporation into general-purpose device simulators
Chalcogenide $mathrm{Ge_2Sb_2Te_5}$ material (GST) can suitably be exploited for manufacturing phase...
A general expression is worked out for the trap-to-trap transition probability per unit time, applic...
A comprehensive numerical model for chalcogenide glasses is presented, coupling a physically based e...
The hydrodynamic model for the trap-limited conduction regime in amorphous materials, used in the de...
none4The hydrodynamic model for the trap-limited conduction regime in amorphous materials, used in t...
Chalcogenide materials have received great attention in the last decade owing to their application i...
Chalcogenide materials are receiving increasing interest for their many applications as active mate...
Chalcogenide materials are receiving increasing interest for their many applications as active mate...
Hot-Carrier trap-limited transport in switching chalcogenides is studied by means of a numerical pro...
The role of the extended (band) states in determining the electric switching of chalcogenide materia...
Chalcogenide $mathrm{Ge_2Sb_2Te_5}$ material (GST) can suitably be exploited for manufacturing phase...
A general expression is worked out for the trap-to-trap transition probability per unit time, applic...
A comprehensive numerical model for chalcogenide glasses is presented, coupling a physically based e...
The hydrodynamic model for the trap-limited conduction regime in amorphous materials, used in the de...
none4The hydrodynamic model for the trap-limited conduction regime in amorphous materials, used in t...
Chalcogenide materials have received great attention in the last decade owing to their application i...
Chalcogenide materials are receiving increasing interest for their many applications as active mate...
Chalcogenide materials are receiving increasing interest for their many applications as active mate...
Hot-Carrier trap-limited transport in switching chalcogenides is studied by means of a numerical pro...
The role of the extended (band) states in determining the electric switching of chalcogenide materia...
Chalcogenide $mathrm{Ge_2Sb_2Te_5}$ material (GST) can suitably be exploited for manufacturing phase...
A general expression is worked out for the trap-to-trap transition probability per unit time, applic...
A comprehensive numerical model for chalcogenide glasses is presented, coupling a physically based e...