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Light-induced magnetization driven by interorbital charge motion in a spin-orbit assisted Mott insulator alpha-RuCl3

Authors :
Amano, T.
Kawakami, Y.
Itoh, H.
Konno, K.
Hasegawa, Y.
Aoyama, T.
Imai, Y.
Ohgushi, K.
Takeuchi, Y.
Wakabayashi, Y.
Goto, K.
Nakamura, Y.
Kishida, H.
Yonemitsu, K.
Iwai, S.
Source :
Phys. Rev. Res.4 L032032(2022)
Publication Year :
2022

Abstract

In a honeycomb-lattice spin-orbit assisted Mott insulator {\alpha}-RuCl3, an ultrafast magnetization is induced by circularly polarized excitation below the Mott gap. Photo-carriers play an important role, which are generated by turning down the synergy of the on-site Coulomb interaction and the spin-orbit interaction realizing the insulator state. An ultrafast 6- fs measurement of photo-carrier dynamics and a quantum mechanical analysis clarify the mechanism, according to which the magnetization emerges from a coherent charge motion between different t2g orbitals (dyz-dxz-dxy) of Ru3+ ions. This ultrafast magnetization is weakened in the antiferromagnetic (AF) phase, which is opposite to the general tendency that the inverse Faraday effect is larger in AF compounds than in paramagnetic ones. This temperature dependence indicates that the interorbital charge motion is affected by pseudo-spin rotational symmetry breaking in the AF phase.

Details

Database :
arXiv
Journal :
Phys. Rev. Res.4 L032032(2022)
Publication Type :
Report
Accession number :
edsarx.2207.03877
Document Type :
Working Paper
Full Text :
https://doi.org/10.1103/PhysRevResearch.4.L032032