Magnetic Properties and Electronic Configurations of Mn Ions in the Diluted Magnetic Semiconductor Ba1-xKx(Zn(1-y)Mny)(2)As(2 )Studied by X-ray Magnetic Circular Dichroism and Resonant Inelastic X-ray Scattering

H. Suzuki,G. Q. Zhao,J. Okamoto,S. Sakamoto, Z. -Y. Chen,Y. Nonaka, G. Shibata, K. Zhao,B. J. Chen, W. -B. Wu,F. -H. Chang,H. -J. Lin,C. -T. Chen, A. Tanaka, M. Kobayashi,Bo Gu, S. Maekawa, Y. J. Uemura,C. Q. Jin, D. J. Huang, A. Fujimori

JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN(2022)

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摘要
The magnetic properties and the electronic excitations of the new diluted magnetic semiconductor Ba1-xKx(Zn1-yMny)2As2 have been studied by x-ray magnetic circular dichroism (XMCD) and resonant inelastic x-ray scattering (RIXS) at the Mn L2,3 edge. The sum rule analysis of the XMCD spectra yields the net spin moment of 0.45 mu B/Mn and the small orbital moment of 0.05 mu B/Mn. This indicates that the Mn atoms are in the high-spin configurations of d5, whereas the presence of competing ferromagnetic and antiferromagnetic interactions between the Mn ions reduces the net spin moment. RIXS spectra show broad peaks from 1 to 6 eV energy loss, which originate from the d-d crystal field excitations of the Mn ions. Based on a comparison of the RIXS line shapes with those of Ga1-xMnxAs, we conclude that the ground state of Mn in Ba1-xKx(Zn1-yMny)2As2 consists not only of the charge-transferred 3d5L electron configuration (L: ligand hole) with weakly bound holes as in Ga1-xMnxAs, but also of the pure 3d5 configuration with free holes.
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