Magnetic anisotropy in Fe phthalocyanine film deposited on Si(110) substrate: Standing configuration
Author(s) -
J. Bartolomé,
F. Bartolomé,
L. M. Garcia Martin,
Thomas Gredig,
Iván K. Schuller,
J. C. Cezar
Publication year - 2017
Publication title -
low temperature physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.356
H-Index - 43
eISSN - 1090-6517
pISSN - 1063-777X
DOI - 10.1063/1.5001295
Subject(s) - magnetic circular dichroism , substrate (aquarium) , magnetic anisotropy , materials science , anisotropy , phthalocyanine , thin film , silicon , condensed matter physics , crystallite , planar , perpendicular , magnetic moment , film plane , dichroism , x ray magnetic circular dichroism , nuclear magnetic resonance , magnetization , optics , magnetic field , optoelectronics , nanotechnology , physics , spectral line , computer graphics (images) , mathematics , oceanography , computer science , geometry , quantum mechanics , metallurgy , astronomy , geology
In this contribution we report on the structural and magnetic properties of an Fe phthalocyanine (FePc) thin film deposited on a silicon substrate. The planar FePc molecules order spontaneously in a standing configuration, i.e., with the molecular plane perpendicular to the substrate. The x-ray linear polarized absorption and x-ray magnetic circular dichroism experiments at the Fe-L2,3 edges at T = 6 K were performed, concluding that at this temperature the film displays magnetic anisotropy with the main easy axis perpendicular to the substrate. This result is explained in terms of the FePc single molecule anisotropy which has its larger moment in the molecule plane. Thus, the standing configuration in polycrystalline thin films favors statistically that, at the macroscopic array level, the magnetic easy anisotropy axis is normal to the substrate.
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