Selection rules for light-induced magnetization of a crystal with threefold symmetry: The case of antiferromagnetic NiO

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Abstract

We propose Raman-induced collinear difference-frequency generation (DFG) as a method to manipulate dynamical magnetization. When a fundamental beam propagates along a threefold rotational axis, this coherent second-order optical process is permitted by angular momentum conservation through the rotational analogue of the umklapp process. As a demonstration, we experimentally obtained polarization properties of collinear magnetic DFG along a [111] axis of a single crystal of antiferromagnetic NiO with micromultidomain structure, which excellently agreed with the theoretical prediction. © 2011 American Physical Society.

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Higuchi, T., Kanda, N., Tamaru, H., & Kuwata-Gonokami, M. (2011). Selection rules for light-induced magnetization of a crystal with threefold symmetry: The case of antiferromagnetic NiO. Physical Review Letters, 106(4). https://doi.org/10.1103/PhysRevLett.106.047401

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