发表的主要SCI论文:
[1]Q. Cao*, J.J. Zhang, J. Du, H.M. Zhao, S. Liu and Q. Peng, “Athermal repair of nanoscale defects in optical materials using a femtosecond laser”, Nanoscale 9, 17233 – 17240 (2017) (IF=7.394,一区,封面文章)
[2]Q. Cao*, Y. Sen, S. Liu and Q. Peng, “Industry-oriented fabrication of oil-water filter”, Nature Nanotechnology, submitted.
[3]Y. Sen, Q. Cao*, Q.S. Wang, T.Y. Wang, Q. Peng, “A highly efficient, stable, durable, and recyclable filter fabricated by femtosecond laser drilling of a titanium foil for oil-water separation”, Scientific Reports 6, 37591 (2016) (IF=4.259,二区)
[4]J.Q. Fang, L. Jiang, Q. Cao*, Y.P. Yuan, L.T. Qu, J.A. Duan, and Y.F. Lu, “Doping transition metal ions as a method for the enhancement of ablation rate in femtosecond laser irradiation of silicate glass”, Chin. Opt. Lett. 12,121402 (2014) (IF= 1.859,三区)
[5]Y.W. Yu, L. Jiang, Q. Cao, X.S. Shi, Q.S. Wang, G.Y. Wang, and Y.F. Lu, “Ultrafast imaging of the light-speed propagation of a focused femtosecond laser pulse in air and its ionized electron dynamics and plasma-induced pulse reshaping”, Applied Physics A 122, 1 (2016) (IF= 1.455,三区)
[6]Y.W. Yu, L. Jiang, Q. Cao, B. Xia, Q. Wang, and Y. Lu, “Pump-probe imaging of the fs-ps-ns dynamics during femtosecond laser Bessel beam drilling in PMMA”, Optics Express 23, 32728 (2015) (IF= 3.307,二区)
[7]L. Jiang, J.Q. Fang, Q. Cao, K.H. Zhang, P. Wang, Y.W. Yu, Q. Huang, and Y.F. Lu, “Femtosecond laser high-efficiency drilling of high-aspect-ratio microholes based on free-electron-density adjustments”, Applied Optics 53, 7290 (2014) (IF= 1.650,三区)
[8]J.Q. Fang, L. Jiang, Q. Cao, K.H. Zhang, Y.P. Yuan, and Y.F. Lu, “Doping effects on ablation enhancement in femtosecond laser irradiation of silicon”, Applied Optics 53, 3897 (2014) (IF= 1.650,三区)
[9]X. Li, W.L. Rong, L. Jiang, K.H. Zhang, C. Li, Q. Cao, G.M. Zhang, and Y.F. Lu, “Generation and elimination of polarization-dependent ablation of cubic crystals by femtosecond laser radiation”, Optics Express 2, 30170 (2014) (IF= 3.307,二区)
[10]X.S. Shi, X. Li, L. Jiang, L.T. Qu, Y. Zhao, P. Ran, Q.S. Wang, Q. Cao, T.B. Ma and Y.F. Lu, “Femtosecond laser rapid fabrication of large-area rose-like micropatterns on freestanding flexible graphene films”, Scientific Reports 5, 17557 (2015) (IF=4.259,二区)
[11]Q. Cao, X.Y. Luo, K.Y. Gao, X.R. Wang, D.M. Chen, and R.Q. Wang, “Improved atom number with a dual color magneto optical trap”, Chin. Phys. B 21, 043203 (2012) (IF=1.223,三区)
[12]L. Deng, E.W. Hagley, Q. Cao, X.R. Wang, X.Y. Luo, R.Q. Wang, M. G. Payne, F. Yang, X.J. Zhou, X.Z. Chen and M.S. Zhan, “Observation of a Red-Blue Detuning Asymmetry in Matter-Wave Superradiance”, Phys. Rev. Lett. 105, 220404 (2010) (IF= 8.462,一区)
发明专利:
[1]再泵浦激光设备及其获得再泵浦激光的方法, ZL201110069547.3,第一发明人,已授权
[2]激光光斑动态测量方法及测量仪, ZL201010606548.2,第一发明人,已授权
[3]一种大功率671nm激光获取方法,ZL2014122601083750,第一发明人,已授权
[4]一种色盲辅助眼镜的设计方法,201611050419.3,申请人和发明人,已经产业化
[5]一种可实现高效率油水分离的滤网及其飞秒激光制备方法,201610041442.X,第一发明人
[6]一种旋翼激光多普勒及微多普勒复合信号仿真器,201710690191.2,第一发明人
[7]基于局部离子注入实现电子状态调控的飞秒激光加工方法,201410171600.4,第一发明人
[8]基于掺杂的激光共振吸收高效率及选择性加工方法,201310209634.3
[9]一种超快激光脉冲序列调制方法,201310209631.X 2013.05.31
[10]一种飞秒激光高效率加工大深径比高质量微孔的方法,201410151016.2
[11]一种飞秒激光诱导材料表面二维周期性结构的方法,201410151218.7
[12]一种基于N型掺杂的飞秒激光加工半导体的方法,201410589883.4
[13]一种基于离子着色的飞秒激光加工玻璃的方法,201410586823.7
[14]一种基于镀膜的脉冲序列调制器,201410144183.4
[15]基于迈克尔逊干涉仪的脉冲序列调制方法及调制器,201410145611.5