paper

Maximum spin polarization in chromium dimer cations as demonstrated by x-ray magnetic circular dichroism spectroscopy

arXiv:1804.03866 · doi:10.1002/anie.201411018

Abstract

X-ray magnetic circular dichroism spectroscopy has been used to characterize the electronic structure and magnetic moment of Cr. Our results indicate that the removal of a single electron from the bonding orbital of Cr drastically changes the preferred coupling of the electronic spins. While the neutral molecule has a zero-spin ground state with a very short bond length, the molecular cation exhibits a ferromagnetically coupled ground state with the highest possible spin of , and almost twice the bond length of the neutral molecule. This spin configuration can be interpreted as a result of indirect exchange coupling between the electrons of the two atoms that is mediated by the single electron through a strong intraatomic - exchange interaction. Our finding allows an estimate of the relative energies of two states that are often discussed as ground-state candidates, the ferromagnetically coupled and the low-spin state.

This is the peer-reviewed, accepted version of the article