Pseudopotential description of rare earths in oxides: The case of Er2Si2O7

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Abstract

The applicability of ultrasoft pseudopotentials to the problem of rare-earth incorporation in silicates is investigated using the compound Er2Si2O7 as a test case. It is found that density-functional theory within the generalized gradient approximation provides a good description of the structural parameters, when treating the Er 4f states as a partially occupied core shell. The density of states and the distribution of electronic charge are analyzed, and it is concluded that the presence of Er tends to increase the covalency of neighboring Si-O bonds. © 2001 The American Physical Society.

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Lægsgaard, J., & Stokbro, K. (2001). Pseudopotential description of rare earths in oxides: The case of Er2Si2O7. Physical Review B - Condensed Matter and Materials Physics, 63(7). https://doi.org/10.1103/PhysRevB.63.075108

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