Interlayer Magnetic Interaction in the CrI3/CrSe2 Heterostructure
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Abstract
Based on first-principles calculations, we systematically study the stacking energy and interlayer magnetic interaction of the heterobilayer composed of CrI3 and CrSe2 monolayers. It is found that the stacking order plays a crucial role in the interlayer magnetic coupling. Among all possible stacking structures, the AA-stacking is the most stable heterostructure, exhibiting interlayer antiferromagnetic interactions. Interestingly, the interlayer magnetic interaction can be effectively tuned by biaxial strain. A 4.3% compressive strain would result in a ferromagnetic interlayer interaction in all stacking orders. These results reveal the magnetic properties of CrI3/CrSe2 heterostructure, which is expected to be applied to spintronic devices.
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Qiu-Hao Wang, Mei-Yan Ni, Shu-Jing Li, Fa-Wei Zheng, Hong-Yan Lu, Ping Zhang. Interlayer Magnetic Interaction in the CrI3/CrSe2 Heterostructure[J]. Chin. Phys. Lett., 2024, 41(5): 057401. DOI: 10.1088/0256-307X/41/5/057401
Qiu-Hao Wang, Mei-Yan Ni, Shu-Jing Li, Fa-Wei Zheng, Hong-Yan Lu, Ping Zhang. Interlayer Magnetic Interaction in the CrI3/CrSe2 Heterostructure[J]. Chin. Phys. Lett., 2024, 41(5): 057401. DOI: 10.1088/0256-307X/41/5/057401
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Qiu-Hao Wang, Mei-Yan Ni, Shu-Jing Li, Fa-Wei Zheng, Hong-Yan Lu, Ping Zhang. Interlayer Magnetic Interaction in the CrI3/CrSe2 Heterostructure[J]. Chin. Phys. Lett., 2024, 41(5): 057401. DOI: 10.1088/0256-307X/41/5/057401
Qiu-Hao Wang, Mei-Yan Ni, Shu-Jing Li, Fa-Wei Zheng, Hong-Yan Lu, Ping Zhang. Interlayer Magnetic Interaction in the CrI3/CrSe2 Heterostructure[J]. Chin. Phys. Lett., 2024, 41(5): 057401. DOI: 10.1088/0256-307X/41/5/057401
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