Disorder-induced ferrimagnetism in sputtered MnCoGe thin films
arXiv:1910.00124
Abstract
Investigations into the magnetic properties of sputtered MnCoGe films in the range uncovered ferrimagnetic order, unlike the ferromagnetic order reported in bulk samples. These films formed hexagonal NiIn-type structures when annealed at temperatures below 600C. While the Curie temperatures of the films are comparable to those of hexagonal bulk MnCoGe, there is a reduction in the magnetization of the MnCoGe films relative to bulk MnCoGe, and a magnetization compensation point is observed in the samples. To understand the behavior, we calculated the magnetic moments of Mn-antisite defects in MnCoGe with density-function theory (DFT) calculations. Models constructed from the calculation suggest that films become ferrimagnetic due to the presence of Mn on the Co and Ge sites. In the samples, these defects arose from the disorder in the films, whereas for , the excess Mn was driven onto the antisites. Mean field modeling of the temperature dependence of the magnetization provides additional evidence for ferrimagnetism. Our mean field and DFT models provide a description of how the variation in film defects with composition will transition the magnetic behavior from a compensated (V-type) to an uncompensated (Q-type) ferrimagnet.
11 pages, 10 figures