The structural and magnetic properties of Mn5Ge3Cx films prepared at elevat
ed substrate temperatures T-S are investigated. In particular, films with x
greater than or equal to 0.5 and T-S = 680 K exhibit a strongly enhanced C
urie temperature T-C = 445 K compared to bulk Mn5Ge3 with T-C = 304 K while
at the same time the average Mn moment decreases from 2.6 to 1 mu (B). Str
uctural analysis of these films suggests that the carbon is interstitially
incorporated into the voids of Mn octahedra of the hexagonal Mn5Si3-type st
ructure giving rise to a lattice compression. The enhanced ferromagnetic st
ability in connection with the lattice compression is interpreted in terms
of an Mn-Mn interaction mediated by C based on a change in the electronic s
tructure. (C) 2000 Elsevier Science B.V. All rights reserved.