Chinese Optics Letters, 2019, 17 (8): 081901, Published Online: Jul. 17, 2019  

Two-photon absorption towards pulse modulation in mechanically exfoliated and CVD monolayer cascaded MoS2 structures Download: 791次

Author Affiliations
1 Laboratory of Micro-Nano Photonic and Optoelectronic Materials and Devices, Key Laboratory of Materials for High-Power Laser, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
2 Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
3 State Key Laboratory of Surface Physics, Key Laboratory of Micro and Nano Photonic Structures of Ministry of Education, Department of Physics, Collaborative Innovation Center of Advanced Microstructures, Fudan University, Shanghai 200433, China
4 Department of Physics, Engineering Physics & Astronomy and Department of Chemistry, Queen’s University, Kingston K7L-3N6, Ontario, Canada
5 State Key Laboratory of High Field Laser Physics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
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Yafeng Xie, Saifeng Zhang, Xiaoyan Zhang, Ningning Dong, Ivan M. Kislyakov, Song Luo, Zhanghai Chen, Jean-Michel Nunzi, Long Zhang, Jun Wang. Two-photon absorption towards pulse modulation in mechanically exfoliated and CVD monolayer cascaded MoS2 structures[J]. Chinese Optics Letters, 2019, 17(8): 081901.

References

[1] TangY. H.MandalK. C.McGuireJ. A.LaiC. W., Phys. Rev. B94, 125302 (2016).

[2] ZhangS. F.DongN. N.McEvoyN.O’BrienM.WintersS.BernerN. C.YimC.LiY. X.ZhangX. Y.ChenZ. H.ZhangL.DuesbergG. S.WangJ., ACS Nano9, 7142 (2015).ANCAC31936-0851

[3] LiY.DongN.ZhangS.ZhangX.FengY.WangK.ZhangL.WangJ., Laser Photon. Rev.9, 427 (2015).

[4] ZhouF.JiW., Laser Photon. Rev.11, 1700021 (2017).

[5] WangK. P.WangJ.FanJ. T.LotyaM.O’NeillA.FoxD.FengY. Y.ZhangX. Y.JiangB. X.ZhaoQ. Z.ZhangH. Z.ColemanJ. N.ZhangL.BlauW. J., ACS Nano7, 9260 (2013).ANCAC31936-0851

[6] ZhangH.LuS. B.ZhengJ.DuJ.WenS. C.TangD. Y.LohK. P., Opt. Express22, 7249 (2014).OPEXFF1094-4087

[7] ZhangJ.OuyangH.ZhengX.YouJ.ChenR. Z.ZhouT.SuiY. Z.LiuY.ChengX. G.JiangT., Opt. Lett.43, 243 (2018).OPLEDP0146-9592

[8] JiangT.MiaoR. L.ZhaoJ.XuZ. J.ZhouT.WeiK.YouJ.ZhengX.WangZ. Y.ChengX., Chin. Opt. Lett.17, 020005 (2019).CJOEE31671-7694

[9] XinX. F.LiuF.YanX. Q.HuiW. W.ZhaoX.GaoX. G.LiuZ. B.TianJ. G., Opt. Express26, 33895 (2018).OPEXFF1094-4087

[10] SunZ. P.MartinezA.WangF., Nat. Photon.10, 227 (2016).NPAHBY1749-4885

[11] YinZ.LiH.LiH.JiangL.ShiY.SunY.LuG.ZhangQ.ChenX.ZhangH., ACS Nano6, 74 (2012).ANCAC31936-0851

[12] LeeH. S.MinS. W.ChangY. G.ParkM. K.NamT.KimH.KimJ. H.RyuS.ImS., Nano Lett.12, 3695 (2012).NALEFD1530-6984

[13] KumarN.NajmaeiS.CuiQ.CeballosF.AjayanP. M.LouJ.ZhaoH., Phys. Rev. B87, 161403 (2013).

[14] ClarkD. J.SenthilkumarV.LeC. T.WeerawarneD. L.ShimB.JangJ. I.ShimJ. H.ChoJ.SimY.SeongM. J.RhimS. H.FreemanA. J.ChungK. H.KimY. S., Phys. Rev. B90, 121409 (2014).

[15] XiaH. D.LiH. P.LanC. Y.LiC.ZhangX. X.ZhangS. J.LiuY., Opt. Express22, 17341 (2014).OPEXFF1094-4087

[16] LuJ.ZouX.LiC.LiW. K.LiuZ. Z.LiuY. Q.LengY. X., Chin. Opt. Lett.15, 041401 (2017).CJOEE31671-7694

[17] AiubE. J.SteinbergD.Thoroh De SouzaE. A.SaitoL. A. M., Opt. Express25, 10546 (2017).OPEXFF1094-4087

[18] HongJ.HuZ.ProbertM.LiK.LvD.YangX.GuL.MaoN.FengQ.XieL.ZhangJ.WuD.ZhangZ.JinC.JiW.ZhangX.YuanJ.ZhangZ., Nat. Commun.6, 6293 (2015).NCAOBW2041-1723

[19] LeeY.KimJ., ACS Photon.5, 4187 (2018).

[20] HaldarS.VovushaH.YadavM. K.ErikssonO.SanyalB., Phys. Rev. B92, 235408 (2015).

[21] ZhangX.ZhangS.XieY.HuangJ.WangL.CuiY.WangJ., Nanoscale10, 17924 (2018).NANOHL2040-3364

[22] NovoselovK. S.GeimA. K.MorozovS. V.JiangD.ZhangY.DubonosS. V.GrigorievaI. V.FirsovA. A., Science306, 666 (2004).SCIEAS0036-8075

[23] LeeY. H.ZhangX. Q.ZhangW.ChangM. T.LinC. T.ChangK. D.YuY. C.WangJ. T.ChangC. S.LiL. J.LinT. W., Adv. Mater.24, 2320 (2012).ADVMEW0935-9648

[24] LiH.ZhangQ.YapC. C. R.TayB. K.EdwinT. H. T.OlivierA.BaillargeatD., Adv. Funct. Mater.22, 1385 (2012).AFMDC61616-301X

[25] LiX. L.HanW. P.WuJ. B.QiaoX. F.ZhangJ.TanP. H., Adv. Funct. Mater.27, 1604468 (2017).AFMDC61616-301X

[26] TongayS.SuhJ.AtacaC.FanW.LuceA.KangJ. S.LiuJ.KoC.RaghunathananR.ZhouJ.OgletreeF.LiJ.GrossmanJ. C.WuJ., Sci. Rep.3, 2657 (2013).SRCEC32045-2322

[27] LiH.TsaiC.KohA. L.CaiL.ContrymanA. W.FragapaneA. H.ZhaoJ. H.HanH. S.ManoharanH. C.Abild-PedersenF.NorskovJ. K.ZhengX. L., Nat. Mater.15, 364 (2016).NMAACR1476-1122

[28] LeeC.YanH.BrusL. E.HeinzT. F.HoneJ.RyuS., ACS Nano4, 2695 (2010).ANCAC31936-0851

[29] WangH.StraitJ. H.ZhangC.ChanW.ManolatouC.TiwariS.RanaF., Phys. Rev. B91, 165411 (2015).

[30] KumarN.CuiQ.CeballosF.HeD.WangY.ZhaoH., Phys. Rev. B89, 125427 (2014).

[31] ZhouF.JiW., Opt. Lett.42, 3113 (2017).OPLEDP0146-9592

[32] QiuD. Y.da JornadaF. H.LouieS. G., Phys. Rev. Lett.111, 216805 (2013).PRLTAO0031-9007

[33] ZhouF.KuaJ. H.LuS.JiW., Opt. Express26, 16093 (2018).OPEXFF1094-4087

[34] TaheriB.LiuH.JassemnejadB.ApplingD.PowellR. C.SongJ. J., Appl. Phys. Lett.68, 1317 (1996).APPLAB0003-6951

[35] HeG. S.ZhengQ. D.BaevA.PrasadP. N., J. Appl. Phys.101, 083108 (2007).JAPIAU0021-8979

[36] KirkpatrickS. M.NaikR. R.StoneM. O., J. Phys. Chem. B105, 2867 (2001).JPCBFK1520-6106

[37] HeJ.MiJ.LiH. P.JiW., J. Phys. Chem. B109, 19184 (2005).JPCBFK1520-6106

[38] DongN. N.LiY. X.ZhangS. F.McEvoyN.GatensbyR.DuesbergG. S.WangJ., ACS Photon.5, 1558 (2018).

[39] WuF.QuF.MacDonaldA. H., Phys. Rev. B91, 075310 (2015).

[40] TanakaA.WatkinsN. J.GaoY., Phys. Rev. B67, 113315 (2003).

[41] ShiH.YanR.BertolazziS.BrivioJ.GaoB.KisA.JenaD.XingH. G.HuangL., ACS Nano7, 1072 (2013).ANCAC31936-0851

[42] StrylandE. W. V.WoodallM. A.VanherzeeleH.SoileauM. J., Opt. Lett.10, 490 (1985).OPLEDP0146-9592

[43] HuangD.ChyiJ. I.MorkoçH., Phys. Rev. B42, 5147 (1990).

[44] ChenW.WangG.QinS.WangC.FangJ.QiJ.ZhangX.WangL.JiaH.ChangS., AIP Adv.3, 042123 (2013).AAIDBI2158-3226

Yafeng Xie, Saifeng Zhang, Xiaoyan Zhang, Ningning Dong, Ivan M. Kislyakov, Song Luo, Zhanghai Chen, Jean-Michel Nunzi, Long Zhang, Jun Wang. Two-photon absorption towards pulse modulation in mechanically exfoliated and CVD monolayer cascaded MoS2 structures[J]. Chinese Optics Letters, 2019, 17(8): 081901.

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