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Orbital-selective spin excitation of a magnetic porphyrin

Authors :
Universidad de Alicante. Departamento de Física Aplicada
Rubio-Verdú, Carmen
Sarasola, Ane
Choi, Deung-Jang
Majzik, Zsolt
Ebeling, René
Calvo, M. Reyes
Ugeda, Miguel M.
Garcia-Lekue, Aran
Sánchez-Portal, Daniel
Pascual, Jose Ignacio
Universidad de Alicante. Departamento de Física Aplicada
Rubio-Verdú, Carmen
Sarasola, Ane
Choi, Deung-Jang
Majzik, Zsolt
Ebeling, René
Calvo, M. Reyes
Ugeda, Miguel M.
Garcia-Lekue, Aran
Sánchez-Portal, Daniel
Pascual, Jose Ignacio
Publication Year :
2018

Abstract

Scattering of electrons by localized spins is the ultimate process enabling detection and control of the magnetic state of a spin-doped material. At the molecular scale, scattering is mediated by the orbitals hosting the spin. Here we report the selective excitation of a molecular spin by tunneling through different molecular orbitals. Spatially resolved tunneling spectra on iron-porphyrins reveal that the inelastic spin excitation extends beyond the iron site, changing shape and symmetry along the molecule. Combining density functional theory simulations with a phenomenological scattering model, we show that the extension and lineshape of the inelastic signal are due to excitation pathways assisted by different frontier orbitals. By selecting the intramolecular site for electron injection, the relative weight of iron and pyrrole orbitals in the tunneling process is modified. Thus, the excitation mechanism, reflected by its spectral lineshape, depends on the degree of localization and energy alignment of the chosen molecular orbital.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1124853949
Document Type :
Electronic Resource