G. Panaccione et al., Magnetic circular dichroism in Co 2p photoemission of Co/Cu(1113): Separation of the fundamental spectra, EUR PHY J B, 19(2), 2001, pp. 281-287
We measured high-quality Co 2p magnetic circular dichroism (MCD) spectra in
photoemission for > 5 ML Co films grown on Cu(1 1 13) using a "complete" e
xperiment, where the sample magnetization and the light helicity vector wer
e reversed separately We show how the four measured spectra, M+/-P+/-, can
be used to make new linear combinations, which correspond to the circular d
ichroism in the angular dependence (CDAD), magnetic linear dichroism in the
angular dependence (MLDAD) and MCD spectra. The integrated signals of the
MLDAD and CDAD can be used to estimate the error caused by the difference i
n the degrees of magnetization and light polarization, respectively, in the
opposite alignments. The MCD signal integrated over the entire 2p, region
does not average to zero, as one would have expected from the sum rule for
photoemission to a non-interacting continuum state. There is a strong MCD s
ignal in the entire region between the 2p(3/2) and 2p(1/2) main lines with
pronounced satellite structure. The differences between the measured and ca
lculated results for an independent particle and an atomic model indicate t
he presence of interatomic electron correlation effects and configurational
mixing.