V2O3 (vanadium sesquioxide) is widely considered to be a model system for strongly correlated electron systems. At ambient pressure, bulk V2O3 undergoes a metal-insulator transition (MIT) at a temperature of 150-160K from a strongly correlated rhombohedral paramagnetic metallic phase (PM) to a monoclinic anti-ferromagnetic insulating phase (AFI), accompanied by an abrupt increase in resistivity of up to 7 decades. Upon application of pressure or doping with Ti, the MIT temperature between the PM and AFI phases decreases until eventually the PM phase is stabilised at all temperatures down to 0K. Doping with e.g. Cr causes a transition to a rhombohedral paramagnetic insulating phase (PI), without any change in longe-range order. This dissert...
V2O3 presents a complex interrelationship between the metal-insulator transition and the structural ...
We report on the deposition of high quality epitaxial V2O3 thin films on (0001) oriented Al2O3 subst...
We have grown epitaxial Cr-doped V2O3 thin films with Cr concentrations between 0% and 20% on (0001)...
V2O3 (vanadium sesquioxide) is widely considered to be a model system for strongly correlated electr...
We report the strain state and transport properties of V2O 3 layers and V2O3/Cr2O3 bilayers deposite...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
V2O3 presents a complex interrelationship between the metal-insulator transition and the structural ...
V2O3 presents a complex interrelationship between the metal-insulator transition and the structural ...
We report on the deposition of high quality epitaxial V2O3 thin films on (0001) oriented Al2O3 subst...
We have grown epitaxial Cr-doped V2O3 thin films with Cr concentrations between 0% and 20% on (0001)...
V2O3 (vanadium sesquioxide) is widely considered to be a model system for strongly correlated electr...
We report the strain state and transport properties of V2O 3 layers and V2O3/Cr2O3 bilayers deposite...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
Vanadium oxide V2O3, which is the prototype of strongly correlated electron systems, is isostructura...
V2O3 presents a complex interrelationship between the metal-insulator transition and the structural ...
V2O3 presents a complex interrelationship between the metal-insulator transition and the structural ...
We report on the deposition of high quality epitaxial V2O3 thin films on (0001) oriented Al2O3 subst...
We have grown epitaxial Cr-doped V2O3 thin films with Cr concentrations between 0% and 20% on (0001)...