Zeeman and Davydov splitting of Frenkel excitons in the antiferromagnet CuB$_2$O$_4$
N. E. Kopteva, D. Kudlacik, D. R. Yakovlev, M. V. Eremin, A. R., Nurmukhametov, M. Bayer, R. V. Pisarev

TL;DR
This study investigates the Zeeman and Davydov splitting of Frenkel excitons in CuB$_2$O$_4$, revealing detailed exciton behavior under magnetic fields and developing a theoretical model to interpret these effects.
Contribution
The paper presents a comprehensive experimental and theoretical analysis of Frenkel excitons in CuB$_2$O$_4$, including the first detailed modeling of their magnetic field dependence.
Findings
Identification of eight Frenkel exciton lines in magnetic field.
Determination of exchange interaction and Davydov splitting energies.
Development of a theoretical model fitting experimental data.
Abstract
The optical spectra of antiferromagnetic copper metaborate CuBO are characterized by an exceptionally rich structure of narrow absorption lines due to electronic transitions within the magnetic Cu ions, but their unambiguous identification and behavior in magnetic field remain far from being fully understood. We studied the polarized magneto-absorption spectra of this tetragonal antiferromagnet with a high spectral resolution in the range of eV in magnetic fields up to 9.5 T and temperatures from 1.6 up to K. We observed a set of eight absorption lines at K in magnetic fields exceeding 1.4 T which we identified as arising from Frenkel excitons related to the ground and the first excited state of Cu ions. The number of these excitons is defined by the presence of the four Cu ions with the doubly-degenerate spin state $S =…
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Taxonomy
TopicsAdvanced Condensed Matter Physics · Physics of Superconductivity and Magnetism · Crystal Structures and Properties
