Determination of nonlinear refractive index of large area monolayer MoS2 at telecommunication wavelength using time-resolved Z-scan technique
The nonlinear refractive index of large area monolayer molybdenum disulfide (MoS2) thin film at the 1,550 nm wavelength band is determined using time-resolved z-scan technique. MoS2 exhibits positive nonlinear phase shift with a large nonlinear refractive index, n(2) value of 1.40 x 10(-13) m(2) W-1...
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my.um.eprints.460562024-11-15T02:22:07Z http://eprints.um.edu.my/46056/ Determination of nonlinear refractive index of large area monolayer MoS2 at telecommunication wavelength using time-resolved Z-scan technique Chew, Jing Wen Chong, Wu Yi Muniandy, Sithi Vinayakam Yap, Yuen Kiat Ahmad, Harith Q Science (General) QC Physics The nonlinear refractive index of large area monolayer molybdenum disulfide (MoS2) thin film at the 1,550 nm wavelength band is determined using time-resolved z-scan technique. MoS2 exhibits positive nonlinear phase shift with a large nonlinear refractive index, n(2) value of 1.40 x 10(-13) m(2) W-1. The obtained value is similar to the n(2) value of monolayer MoS2 film measured at 2.0 mu m, and is approximately five and seven orders of magnitude larger than silicon and common bulk dielectrics. The large n(2) indicates that MoS2 can be used as nonlinear refractive 2D material for photonics applications operating in the 1,550 nm optical telecommunications wavelength band. World Scientific Publishing 2024-10 Article PeerReviewed Chew, Jing Wen and Chong, Wu Yi and Muniandy, Sithi Vinayakam and Yap, Yuen Kiat and Ahmad, Harith (2024) Determination of nonlinear refractive index of large area monolayer MoS2 at telecommunication wavelength using time-resolved Z-scan technique. Journal of Nonlinear Optical Physics & Materials, 33 (05). p. 2350052. ISSN 0218-8635, DOI https://doi.org/10.1142/S0218863523500522 <https://doi.org/10.1142/S0218863523500522>. https://doi.org/10.1142/S0218863523500522 10.1142/S0218863523500522 |
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Q Science (General) QC Physics Chew, Jing Wen Chong, Wu Yi Muniandy, Sithi Vinayakam Yap, Yuen Kiat Ahmad, Harith Determination of nonlinear refractive index of large area monolayer MoS2 at telecommunication wavelength using time-resolved Z-scan technique |
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The nonlinear refractive index of large area monolayer molybdenum disulfide (MoS2) thin film at the 1,550 nm wavelength band is determined using time-resolved z-scan technique. MoS2 exhibits positive nonlinear phase shift with a large nonlinear refractive index, n(2) value of 1.40 x 10(-13) m(2) W-1. The obtained value is similar to the n(2) value of monolayer MoS2 film measured at 2.0 mu m, and is approximately five and seven orders of magnitude larger than silicon and common bulk dielectrics. The large n(2) indicates that MoS2 can be used as nonlinear refractive 2D material for photonics applications operating in the 1,550 nm optical telecommunications wavelength band. |
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Article |
author |
Chew, Jing Wen Chong, Wu Yi Muniandy, Sithi Vinayakam Yap, Yuen Kiat Ahmad, Harith |
author_facet |
Chew, Jing Wen Chong, Wu Yi Muniandy, Sithi Vinayakam Yap, Yuen Kiat Ahmad, Harith |
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Chew, Jing Wen |
title |
Determination of nonlinear refractive index of large area monolayer MoS2 at telecommunication wavelength using time-resolved Z-scan technique |
title_short |
Determination of nonlinear refractive index of large area monolayer MoS2 at telecommunication wavelength using time-resolved Z-scan technique |
title_full |
Determination of nonlinear refractive index of large area monolayer MoS2 at telecommunication wavelength using time-resolved Z-scan technique |
title_fullStr |
Determination of nonlinear refractive index of large area monolayer MoS2 at telecommunication wavelength using time-resolved Z-scan technique |
title_full_unstemmed |
Determination of nonlinear refractive index of large area monolayer MoS2 at telecommunication wavelength using time-resolved Z-scan technique |
title_sort |
determination of nonlinear refractive index of large area monolayer mos2 at telecommunication wavelength using time-resolved z-scan technique |
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World Scientific Publishing |
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2024 |
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http://eprints.um.edu.my/46056/ https://doi.org/10.1142/S0218863523500522 |
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