Native and impurity point defects in both yttrium aluminium perovskite (YAP) and garnet (YAG) crystals are studied in the framework of the pair-potential approximation coupled with the shell model description of the lattice ions. The calculated formation energies for native defects suggest that the antisite disorder is preferred over the Frenkel and Schottky-like disorder in both YAP and YAG. The calculated values of the distortion caused by the antisite YAlx in the lattice turn out to be in an excellent agreement with the EXAFS measurements. In non-stoichiometric compounds, the calculated reaction energies indicate that excess Y2O3 or Al2O3 is most likely to be accommodated by the formation of antisites rather than vacancies or interstitia...
The ground state electronic properties of the alpha-Al2O3, YAlO3 and Y3Al5O12 (YAG garnet) systems h...
Using computer simulation techniques the defect structure, the ionic migration mechanisms, the solut...
National Nature Science Foundation of China (Grant No. 60607015)Computer simulation techniques were ...
Native point defects in yttrium aluminum garnet (YAG) are studied in the framework of the pair-poten...
Native point defects in yttrium aluminum garnet (YAG) are studied in the framework of the pair-poten...
First-principles density-functional theory calculations have been performed on the atomistic structu...
The atomistic structure, energetics, and electronic structure of single-substitutional Ce and La def...
Lattice vacancies are a major concern for the use of the Y3Al5O12 garnet (YAG) in optical applicatio...
Atomistic simulation calculations have been used to study disorder and deviation from stoichiometry ...
Density functional theory calculations have been performed on the electronic structure and the atomi...
Yttrium and the rare-earth elements (Y+REEs) are incorporated into aluminosilicate garnet as trivale...
We study the impact of the Nd-doping on the grain formation, the crystal structure, and the fluoresc...
A series of atomic models of the Sigma 5(2 1 0)/[0 0 1] symmetric tilt grain boundary in yttrium alu...
The introduction of hydrogen in the yttrium aluminum garnet, Y$$_3$$Al$$_5$$O$$_{12}$$ (YAG), has be...
The interactions between Ce 3+ and antisite defects (AD) in YAG (Y 3Al 5O 12) are studied by means o...
The ground state electronic properties of the alpha-Al2O3, YAlO3 and Y3Al5O12 (YAG garnet) systems h...
Using computer simulation techniques the defect structure, the ionic migration mechanisms, the solut...
National Nature Science Foundation of China (Grant No. 60607015)Computer simulation techniques were ...
Native point defects in yttrium aluminum garnet (YAG) are studied in the framework of the pair-poten...
Native point defects in yttrium aluminum garnet (YAG) are studied in the framework of the pair-poten...
First-principles density-functional theory calculations have been performed on the atomistic structu...
The atomistic structure, energetics, and electronic structure of single-substitutional Ce and La def...
Lattice vacancies are a major concern for the use of the Y3Al5O12 garnet (YAG) in optical applicatio...
Atomistic simulation calculations have been used to study disorder and deviation from stoichiometry ...
Density functional theory calculations have been performed on the electronic structure and the atomi...
Yttrium and the rare-earth elements (Y+REEs) are incorporated into aluminosilicate garnet as trivale...
We study the impact of the Nd-doping on the grain formation, the crystal structure, and the fluoresc...
A series of atomic models of the Sigma 5(2 1 0)/[0 0 1] symmetric tilt grain boundary in yttrium alu...
The introduction of hydrogen in the yttrium aluminum garnet, Y$$_3$$Al$$_5$$O$$_{12}$$ (YAG), has be...
The interactions between Ce 3+ and antisite defects (AD) in YAG (Y 3Al 5O 12) are studied by means o...
The ground state electronic properties of the alpha-Al2O3, YAlO3 and Y3Al5O12 (YAG garnet) systems h...
Using computer simulation techniques the defect structure, the ionic migration mechanisms, the solut...
National Nature Science Foundation of China (Grant No. 60607015)Computer simulation techniques were ...