Metal-insulator transition (MIT) is one of the most essential topics in condensed matter physics and materials science. The accompanied drastic change in electrical resistance can be exploited in electronic devices, such as data storage and memory technology. It is generally accepted that the underlying mechanism of most MITs is an interplay of electron correlation effects (Mott type) and disorder effects (Anderson type), and to disentangle the two effects is difficult. Recent progress on the crystalline Ge1Sb2Te4 (GST) compound provides compelling evidence for a disorder-driven MIT. In this work, we discuss the presence of strong disorder in GST, and elucidate its effects on electron localization and transport properties. We also show how ...
Disorder has a tremendous impact on charge transport in crystalline compounds on the pseudo-binary l...
Disorder has a tremendous impact on charge transport in crystalline compounds on the pseudo-binary l...
In this study the focus lies on the crystalline phase of phase-change materials. The crystalline pha...
Metal–insulator transition (MIT) is one of the most essential topics in condensed matter physics and...
Phase Change Materials (PCMs) are unique compounds employed in non-volatile random access memory tha...
The mechanism for the fast switching between amorphous, metastable, and crystalline structures in ch...
Ge–Sb–Te (“GST”) alloys are leading phase-change materials for digital memories and neuro-inspired c...
Electronic phase-change memory devices take advantage of the different resistivity of two states, am...
Disorder-induced electron localization and metal-insulator transitions (MITs) have been a very activ...
Phase Change Materials (PCMs) are unique compounds employed in non-volatile random access memory tha...
Phase Change Materials (PCMs) are unique compounds employed in non-volatile random access memory tha...
Understanding the relation between the structural disorder in the atomic geometry of the recrystalli...
Phase change materials (PCMs) possess a peculiar combination of properties. They are capable of swit...
Structural defects and their dynamics play an important role in controlling the behavior of phase-ch...
Crystalline GeSb2Te4 (GST) is a remarkable material, as it allows to continuously tune the electrica...
Disorder has a tremendous impact on charge transport in crystalline compounds on the pseudo-binary l...
Disorder has a tremendous impact on charge transport in crystalline compounds on the pseudo-binary l...
In this study the focus lies on the crystalline phase of phase-change materials. The crystalline pha...
Metal–insulator transition (MIT) is one of the most essential topics in condensed matter physics and...
Phase Change Materials (PCMs) are unique compounds employed in non-volatile random access memory tha...
The mechanism for the fast switching between amorphous, metastable, and crystalline structures in ch...
Ge–Sb–Te (“GST”) alloys are leading phase-change materials for digital memories and neuro-inspired c...
Electronic phase-change memory devices take advantage of the different resistivity of two states, am...
Disorder-induced electron localization and metal-insulator transitions (MITs) have been a very activ...
Phase Change Materials (PCMs) are unique compounds employed in non-volatile random access memory tha...
Phase Change Materials (PCMs) are unique compounds employed in non-volatile random access memory tha...
Understanding the relation between the structural disorder in the atomic geometry of the recrystalli...
Phase change materials (PCMs) possess a peculiar combination of properties. They are capable of swit...
Structural defects and their dynamics play an important role in controlling the behavior of phase-ch...
Crystalline GeSb2Te4 (GST) is a remarkable material, as it allows to continuously tune the electrica...
Disorder has a tremendous impact on charge transport in crystalline compounds on the pseudo-binary l...
Disorder has a tremendous impact on charge transport in crystalline compounds on the pseudo-binary l...
In this study the focus lies on the crystalline phase of phase-change materials. The crystalline pha...