AbstractMagnetic phase transitions that involve multipolar degrees of freedom have been widely studied during the last couple of decades, challenging the common approximation which assumes that the physical properties of a magnetic material could be effectively described by purely dipolar degrees of freedom. Due to the complexity of the problem and to the large number of competing interactions involved, the simple (fcc) crystal structure of the actinide dioxides made them the ideal playground system for such theoretical and experimental studies. In the present paper, we summarize our recent attempts to provide an ab initio description of the ordered phases of UO2, NpO2, and AmO2 by means of state-of-the-art LDA+U first-principles calculatio...
The behaviour of the actinide oxides has been of major interest since the 1940s. UO2 is known to exh...
To explore the formation of noncollinear magnetic configurations in materials with strongly correlat...
The magnetic structure of the actinide dioxides (AnO2) remains a subject of intense research and is ...
Magnetic phase transitions which involve multipolar degrees of freedom have been widely studied duri...
AbstractMagnetic phase transitions that involve multipolar degrees of freedom have been widely studi...
The magnetic structure of the actinide dioxides (AnO2) remains a field of intense research. A low-te...
The magnetic structure of the actinide dioxides (AnO2) remains a field of intense research. A low-te...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
We provide a first-principles, materials-specific theory of multipolar order and superexchange in Np...
The behaviour of the actinide oxides has been of major interest since the 1940s. UO2 is known to exh...
To explore the formation of noncollinear magnetic configurations in materials with strongly correlat...
The magnetic structure of the actinide dioxides (AnO2) remains a subject of intense research and is ...
Magnetic phase transitions which involve multipolar degrees of freedom have been widely studied duri...
AbstractMagnetic phase transitions that involve multipolar degrees of freedom have been widely studi...
The magnetic structure of the actinide dioxides (AnO2) remains a field of intense research. A low-te...
The magnetic structure of the actinide dioxides (AnO2) remains a field of intense research. A low-te...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
We provide a first-principles, materials-specific theory of multipolar order and superexchange in Np...
The behaviour of the actinide oxides has been of major interest since the 1940s. UO2 is known to exh...
To explore the formation of noncollinear magnetic configurations in materials with strongly correlat...
The magnetic structure of the actinide dioxides (AnO2) remains a subject of intense research and is ...