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Multiferroic-Enabled Magnetic-Excitons in 2D Quantum-Entangled Van der Waals Antiferromagnet NiI2

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Abstract
Matter-light interaction is at the center of diverse research fields from quantum optics to condensed matter physics, opening new fields like laser physics. A magnetic exciton is one such rare example found in magnetic insulators. However, it is relatively rare to observe that external variables control matter-light interaction. Here, it is reported that the broken inversion symmetry of multiferroicity can act as an external knob enabling magnetic excitons in the van der Waals antiferromagnet NiI2. It is further discovered that this magnetic exciton arises from a transition between Zhang-Rice-triplet and Zhang-Rice-singlet fundamentally quantum-entangled states. This quantum entanglement produces an ultrasharp optical exciton peak at 1.384 eV with a 5 meV linewidth. The work demonstrates that NiI2 is 2D magnetically ordered with an intrinsically quantum-entangled ground state.
Author(s)
Son, SuhanLee, YoujinKim, Jae HaKim, Beom HyunKim, ChaebinNa, WoongkiJu, HwiinPark, SudongNag, AbhishekZhou, Ke-JinSon, Young-WooKim, HyeongdoNoh, Woo-SukPark, Jae-HoonLee, Jong SeokCheong, HyeonsikKim, Jae HoonPark, Je-Geun
Issued Date
2022-03
Type
Article
DOI
10.1002/adma.202109144
URI
https://scholar.gist.ac.kr/handle/local/10968
Publisher
WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
Citation
Advanced Materials, v.34, no.10
ISSN
0935-9648
Appears in Collections:
Department of Physics and Photon Science > 1. Journal Articles
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