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Spin- and energy-dependent tunneling through a single molecule with intramolecular spatial resolution
Journal article   Peer reviewed

Spin- and energy-dependent tunneling through a single molecule with intramolecular spatial resolution

Jens Brede, Nicolae Atodiresei, Stefan Kuck, Predrag Lazić, Vasile Caciuc, Yoshitada Morikawa, Germar Hoffmann, Stefan Blügel and Roland Wiesendanger
Physical Review Letters, Vol.105(4), 047204
21/07/2010

Abstract

We investigate the spin- and energy-dependent tunneling through a single organic molecule (CoPc) adsorbed on a ferromagnetic Fe thin film, spatially resolved by low-temperature spin-polarized scanning tunneling microscopy. Interestingly, the metal ion as well as the organic ligand show a significant spin dependence of tunneling current flow. State-of-the-art ab initio calculations including also van der Waals interactions reveal a strong hybridization of molecular orbitals and substrate 3d states. The molecule is anionic due to a transfer of one electron, resulting in a nonmagnetic (S=0) state. Nevertheless, tunneling through the molecule exhibits a pronounced spin dependence due to spin-split molecule-surface hybrid states. © 2010 The American Physical Society.

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