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Strain Engineering of the Berry Curvature Dipole and Valley Magnetization in Monolayer MoS<sub>2</sub>

Cited 106 time in Web of Science Cited 111 time in Scopus
Authors

Son, Joolee; Kim, Kyung-Han; Ahn, Y. H.; Lee, Hyun-Woo; Lee, Jieun

Issue Date
2019-07
Publisher
AMER PHYSICAL SOC
Citation
PHYSICAL REVIEW LETTERS, Vol.123 No.3
Abstract
The Berry curvature dipole is a physical quantity that is expected to allow various quantum geometrical phenomena in a range of solid-state systems. Monolayer transition metal dichalcogenides provide an exceptional platform to modulate and investigate the Berry curvature dipole through strain. Here, we theoretically demonstrate and experimentally verify for monolayer MoS2 the generation of valley orbital magnetization as a response to an in-plane electric field due to the Berry curvature dipole. The measured valley orbital magnetization shows excellent agreement with the calculated Berry curvature dipole, which can be controlled by the magnitude and direction of strain. Our results show that the Berry curvature dipole acts as an effective magnetic field in current-carrying systems, providing a novel route to generate magnetization.
ISSN
0031-9007
URI
https://hdl.handle.net/10371/203558
DOI
https://doi.org/10.1103/PhysRevLett.123.036806
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  • College of Natural Sciences
  • Department of Physics and Astronomy
Research Area Condensed Matter Physics, Nanoscale Physics and Photonics, 나노 물리와 나노 광자학, 응집 물질 물리

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