A thorough understanding of the chemistry of PuO2 is critical to the design of next-generation nuclear fuels and the long-term storage of nuclear materials. Despite over 75 years of study, the ground-state magnetic structure of PuO2 remains a matter of much debate. Experimental studies loosely indicate a diamagnetic (DM) ground-state, whereas theoretical methods have proposed either a collinear ferromagnetic (FM) or anti-ferromagnetic (AFM) ground-state, both of which would be expected to cause a distortion from the reported Fm[3 with combining macron]m symmetry. In this work, we have used accurate calculations based on the density functional theory (DFT) to systematically investigate the magnetic structure of PuO2 to resolve this controver...
The management of large stockpiles of Pu, separated from spent nuclear fuel or nuclear weapons progr...
We systematically investigate the electronic structure, magnetic order, and valence of alpha-Pu2O3 (...
Experiments conducted on Uranium Dioxide (UO2) under the Manhattan Project led to the creation of th...
A thorough understanding of the chemistry of PuO2 is critical to the design of next-generation nucle...
Actinide compounds attract a great interest for both materials scientists and nuclear engineers bein...
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 magnetic structure of the actinide dioxides (AnO2) remains a subject of intense research and is ...
A central issue in material science is to obtain understanding of the electronic correlations that c...
Using spin-polarized relativistic density functional theory the electronic and magnetic structures f...
By the local density approximation with on-site Coulomb repulsion U (LDA +U) method with spin-orbit ...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
To explore the formation of noncollinear magnetic configurations in materials with strongly correlat...
Occurrence of magnetic order on the basis of plutonium can be captured by LDA+U calculations. System...
Uranium dioxide (UO$_2$) remains a formidable challenge for first-principles approaches, due to the ...
The management of large stockpiles of Pu, separated from spent nuclear fuel or nuclear weapons progr...
We systematically investigate the electronic structure, magnetic order, and valence of alpha-Pu2O3 (...
Experiments conducted on Uranium Dioxide (UO2) under the Manhattan Project led to the creation of th...
A thorough understanding of the chemistry of PuO2 is critical to the design of next-generation nucle...
Actinide compounds attract a great interest for both materials scientists and nuclear engineers bein...
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 magnetic structure of the actinide dioxides (AnO2) remains a subject of intense research and is ...
A central issue in material science is to obtain understanding of the electronic correlations that c...
Using spin-polarized relativistic density functional theory the electronic and magnetic structures f...
By the local density approximation with on-site Coulomb repulsion U (LDA +U) method with spin-orbit ...
The actinide oxides play a vital role in the nuclear fuel cycle. For systems where current experimen...
To explore the formation of noncollinear magnetic configurations in materials with strongly correlat...
Occurrence of magnetic order on the basis of plutonium can be captured by LDA+U calculations. System...
Uranium dioxide (UO$_2$) remains a formidable challenge for first-principles approaches, due to the ...
The management of large stockpiles of Pu, separated from spent nuclear fuel or nuclear weapons progr...
We systematically investigate the electronic structure, magnetic order, and valence of alpha-Pu2O3 (...
Experiments conducted on Uranium Dioxide (UO2) under the Manhattan Project led to the creation of th...