A time-dependent trap-limited conduction scheme is used to analyze the transient behavior of bistable homogeneous amorphous semiconductors when either the electric field or the current density is prescribed. Numerical outcomes confirm that, for a current-controlled system, the working point is unique and stable in any region of the current-voltage characteristic, while in a field-controlled system the negative differential-resistance region is unstable even in absence of circuit parasitics. The proposed theoretical approach represents a valid tool to grasp the relevant time-dependent features of the Ovonic switching in chalcogenide materials
The theory of transport in disordered systems is approached using the Master equation point of view....
The low-field electric conduction in amorphous chalcogenides is here investigated by means of a Mont...
Chalcogenide glasses are widely used in phase-change nonvolatile memories and in optical recording m...
A time-dependent trap-limited conduction scheme is used to analyze the transient behavior of bistabl...
A time-dependent trap-limited conduction scheme is used to analyze the transient behavior of bistabl...
An analytical theory of electrical bistability in amorphous semiconductors is presented, based on so...
Chalcogenide materials have received great attention in the last decade owing to their application i...
A detailed investigation of the time evolution for the low-field resistance o and the threshold volt...
The I(V) characteristics of amorphous chalcogenides usually show a negative differential conductance...
An analytical theory of electrical bistability in amorphous semiconductors is presented and validate...
Starting from experimental results and first-principle simulations we have developed a transport mod...
We describe techniques to study electronic transport and localized state distributions in amorphous ...
A space- and time-dependent theoretical model based on a trap-assisted, charge-transport framework f...
Chalcogenide materials are receiving increasing interest for their many applications as active mate...
Chalcogenide $mathrm{Ge_2Sb_2Te_5}$ material (GST) can suitably be exploited for manufacturing phase...
The theory of transport in disordered systems is approached using the Master equation point of view....
The low-field electric conduction in amorphous chalcogenides is here investigated by means of a Mont...
Chalcogenide glasses are widely used in phase-change nonvolatile memories and in optical recording m...
A time-dependent trap-limited conduction scheme is used to analyze the transient behavior of bistabl...
A time-dependent trap-limited conduction scheme is used to analyze the transient behavior of bistabl...
An analytical theory of electrical bistability in amorphous semiconductors is presented, based on so...
Chalcogenide materials have received great attention in the last decade owing to their application i...
A detailed investigation of the time evolution for the low-field resistance o and the threshold volt...
The I(V) characteristics of amorphous chalcogenides usually show a negative differential conductance...
An analytical theory of electrical bistability in amorphous semiconductors is presented and validate...
Starting from experimental results and first-principle simulations we have developed a transport mod...
We describe techniques to study electronic transport and localized state distributions in amorphous ...
A space- and time-dependent theoretical model based on a trap-assisted, charge-transport framework f...
Chalcogenide materials are receiving increasing interest for their many applications as active mate...
Chalcogenide $mathrm{Ge_2Sb_2Te_5}$ material (GST) can suitably be exploited for manufacturing phase...
The theory of transport in disordered systems is approached using the Master equation point of view....
The low-field electric conduction in amorphous chalcogenides is here investigated by means of a Mont...
Chalcogenide glasses are widely used in phase-change nonvolatile memories and in optical recording m...