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Two-photon absorption towards pulse modulation in mechanically exfoliated and CVD monolayer cascaded MoS2 structures

Two-photon absorption towards pulse modulation in mechanically exfoliated and CVD monolayer cascaded MoS2 structures
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摘要 Mechanical exfoliation(ME) and chemical vapor deposition(CVD) MoS2 monolayers have been extensively studied, but the large differences of nonlinear optical performance between them have never been clarified. Here,we prepared MoS2 monolayers using ME and CVD methods and investigated the two-photon absorption(TPA)response and its saturation. We found that the TPA coefficient of the ME monolayer was about(1.88 ± 0.21)× 10^3 cm/GW, nearly two times that of the CVD one at(1.04 ± 0.15)× 10^3 cm/GW. Furthermore,we simulated and compared the TPA-induced optical pulse modulation in multilayer cascaded structures, which is instructive and meaningful for the design of optical devices such as a beam shaper and optical limiter. Mechanical exfoliation(ME) and chemical vapor deposition(CVD) MoS2 monolayers have been extensively studied, but the large differences of nonlinear optical performance between them have never been clarified. Here,we prepared MoS2 monolayers using ME and CVD methods and investigated the two-photon absorption(TPA)response and its saturation. We found that the TPA coefficient of the ME monolayer was about(1.88 ± 0.21) × 103 cm/GW, nearly two times that of the CVD one at(1.04 ± 0.15) × 103 cm/GW. Furthermore,we simulated and compared the TPA-induced optical pulse modulation in multilayer cascaded structures, which is instructive and meaningful for the design of optical devices such as a beam shaper and optical limiter.
作者 谢亚锋 张赛锋 张晓艳 董宁宁 Ivan M.Kislyakov 罗松 陈张海 Jean-Michel Nunzi 张龙 王俊 Yafeng Xie;Saifeng Zhang;Xiaoyan Zhang;Ningning Dong;Ivan M.Kislyakov;Song Luo;Zhanghai Chen;Jean-Michel Nunzi;Long Zhang;Jun Wang
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2019年第8期71-75,共5页 中国光学快报(英文版)
基金 supported by the National Natural Science Foundation of China(NSFC)(Nos.61675217 and 11874370) the Strategic Priority Research Program of CAS(No.XDB16030700) the Key Research Program of Frontier Science of CAS(No.QYZDB-SSW-JSC041) the Program of Shanghai Academic Research Leader(No.17XD1403900) the Natural Science Foundation of Shanghai(No.18ZR1444700) the Shanghai Rising-Star Program(A Type 19QA1410000) the Youth Innovation Promotion Association,CAS
关键词 ME CVD LIMITER
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