Ferromagnetic and Antiferromagnetic magnons in Cr<sub>2</sub>C MXenes
POSTER
Abstract
The synthesis of 2D materials has boosted the study of magnetic properties in two dimensions1. As an example, Cr-based structures (e.g., CrI3) allow for the realization of different magnetic orderings2, and topological magnons3. In this work, we study the MXenes Cr2C magnetic material via the spin-spin Heisenberg Hamiltonian including exchange interactions between first, second and third neighbors and Zeeman interaction. Previous DFT calculations showed that different Cr2C functionalization leads to different magnetic orderings, including one ferromagnetic (FM) and three antiferromagnetic (AFM) configurations3. Here we calculate the magnon dispersion relations for the FM and AFM magnetic orderings using the Holstein-Primakoff and obtain magnons group velocities larger than the ones in CrI3.
References
1Gong, Cheng, and Xiang Zhang. "Two-dimensional magnetic crystals and emergent heterostructure devices." Science363.6428 (2019): eaav4450.
2Yogendra Limbu, Hari Paudyal, Denis R. Candido, Michael E. Flatté and Durga Paudyal. To be submitted.
3Costa, António T., et al. "Topological magnons in CrI3 monolayers: an itinerant fermion description." 2D Materials 7.4 (2020): 045031.
References
1Gong, Cheng, and Xiang Zhang. "Two-dimensional magnetic crystals and emergent heterostructure devices." Science363.6428 (2019): eaav4450.
2Yogendra Limbu, Hari Paudyal, Denis R. Candido, Michael E. Flatté and Durga Paudyal. To be submitted.
3Costa, António T., et al. "Topological magnons in CrI3 monolayers: an itinerant fermion description." 2D Materials 7.4 (2020): 045031.
Presenters
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Eudes T Gomes da Silva
University of Iowa
Authors
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Eudes T Gomes da Silva
University of Iowa
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Denis R Candido
University of Iowa