Transition-metal oxides at the metal–insulator boundary, especially those belonging to the perovskite family, exhibit fascinating phenomena such as insulator–metal transitions controlled by composition, high-temperature superconductivity and giant magnetoresistance (GMR). Interestingly, many of these marginally metallic oxides obey the established criteria for metallicity and have a finite density of states at the Fermi level. The perovskite manganates exhibiting GMR, on the other hand, are unusual in that they possess very high resistivities in the 'metallic' state and show no significant density of states at the Fermi level. Marginal metallicity in oxide systems is a problem of great complexity and contemporary interest and its understand...
A review is presented of recent experimental results of low temperature studies of composition drive...
Giant magnetoresistance (GMR) and related properties of manganate perovskites of the general formula...
The composition-controlled metal-insulator transition in the perovskite systems LaNi1−xMxO3 (M...
Transition-metal oxides at the metal-insulator boundary, especially those belonging to the perovskit...
Transition-metal oxides at the metal-insulator boundary, especially those belonging to the perovskit...
Transition-metal oxides of perovskite structure exhibit compositionally controlled metal-insulator (...
Transition-metal oxides of perovskite structure exhibit compositionally controlled metal-insulator (...
Transition-metal oxides of perovskite structure exhibit compositionally controlled metal-insulator (...
Some materials exhibit large changes in electrical resistance in the presence of a magnetic field, a...
Some materials exhibit large changes in electrical resistance in the presence of a magnetic field, a...
Some materials exhibit large changes in electrical resistance in the presence of a magnetic field, a...
Giant magnetoresistance (GMR), which was until recently confined to magnetic layered and granular ma...
Giant magnetoresistance (GMR), which was until recently confined to magnetic layered and granular ma...
Giant magnetoresistance (GMR), which was until recently confined to magnetic layered and granular ma...
Giant magnetoresistance (GMR), which was until recently confined to magnetic layered and granular ma...
A review is presented of recent experimental results of low temperature studies of composition drive...
Giant magnetoresistance (GMR) and related properties of manganate perovskites of the general formula...
The composition-controlled metal-insulator transition in the perovskite systems LaNi1−xMxO3 (M...
Transition-metal oxides at the metal-insulator boundary, especially those belonging to the perovskit...
Transition-metal oxides at the metal-insulator boundary, especially those belonging to the perovskit...
Transition-metal oxides of perovskite structure exhibit compositionally controlled metal-insulator (...
Transition-metal oxides of perovskite structure exhibit compositionally controlled metal-insulator (...
Transition-metal oxides of perovskite structure exhibit compositionally controlled metal-insulator (...
Some materials exhibit large changes in electrical resistance in the presence of a magnetic field, a...
Some materials exhibit large changes in electrical resistance in the presence of a magnetic field, a...
Some materials exhibit large changes in electrical resistance in the presence of a magnetic field, a...
Giant magnetoresistance (GMR), which was until recently confined to magnetic layered and granular ma...
Giant magnetoresistance (GMR), which was until recently confined to magnetic layered and granular ma...
Giant magnetoresistance (GMR), which was until recently confined to magnetic layered and granular ma...
Giant magnetoresistance (GMR), which was until recently confined to magnetic layered and granular ma...
A review is presented of recent experimental results of low temperature studies of composition drive...
Giant magnetoresistance (GMR) and related properties of manganate perovskites of the general formula...
The composition-controlled metal-insulator transition in the perovskite systems LaNi1−xMxO3 (M...